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PDBsum entry 1axc

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Complex (DNA-binding protein/DNA) PDB id
1axc

 

 

 

 

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Contents
Protein chains
249 a.a. *
18 a.a. *
Waters ×885
* Residue conservation analysis
PDB id:
1axc
Name: Complex (DNA-binding protein/DNA)
Title: Human pcna
Structure: Pcna. Chain: a, c, e. Synonym: proliferating cell nuclear antigen. P21/waf1. Chain: b, d, f. Fragment: 22 c terminal residues (139 - 160)
Source: Homo sapiens. Human. Organism_taxid: 9606. Organism_taxid: 9606
Biol. unit: Trimer (from PDB file)
Resolution:
2.60Å     R-factor:   0.192     R-free:   0.289
Authors: J.M.Gulbis,J.Kuriyan
Key ref:
J.M.Gulbis et al. (1996). Structure of the C-terminal region of p21(WAF1/CIP1) complexed with human PCNA. Cell, 87, 297-306. PubMed id: 8861913 DOI: 10.1016/S0092-8674(00)81347-1
Date:
14-Oct-97     Release date:   28-Jan-98    
PROCHECK
Go to PROCHECK summary
 Headers
 References

Protein chains
Pfam   ArchSchema ?
P12004  (PCNA_HUMAN) -  Proliferating cell nuclear antigen from Homo sapiens
Seq:
Struc:
261 a.a.
249 a.a.
Protein chains
Pfam   ArchSchema ?
P38936  (CDN1A_HUMAN) -  Cyclin-dependent kinase inhibitor 1 from Homo sapiens
Seq:
Struc:
164 a.a.
18 a.a.
Key:    PfamA domain  Secondary structure  CATH domain

 Enzyme reactions 
   Enzyme class: Chains A, B, C, D, E, F: E.C.?
[IntEnz]   [ExPASy]   [KEGG]   [BRENDA]

 

 
DOI no: 10.1016/S0092-8674(00)81347-1 Cell 87:297-306 (1996)
PubMed id: 8861913  
 
 
Structure of the C-terminal region of p21(WAF1/CIP1) complexed with human PCNA.
J.M.Gulbis, Z.Kelman, J.Hurwitz, M.O'Donnell, J.Kuriyan.
 
  ABSTRACT  
 
The crystal structure of the human DNA polymerase delta processivity factor PCNA (proliferating cell nuclear antigen) complexed with a 22 residue peptide derived from the C-terminus of the cell-cycle checkpoint protein p21(WAF1/CIP1) has been determined at 2.6 angstrom resolution. p21 binds to PCNA in a 1:1 stoichiometry with an extensive array of interactions that include the formation of a beta sheet with the interdomain connector loop of PCNA. An intact trimeric ring is maintained in the structure of the p21-PCNA complex, with a central hole available for DNA interaction. The ability of p21 to inhibit the action of PCNA is therefore likely to be due to its masking of elements on PCNA that are required for the binding of other components of the polymerase assembly.
 
  Selected figure(s)  
 
Figure 1.
Figure 1. Ribbon Diagram of the PCNA Monomer with Bound p21 Peptide(a) Stereo diagram of the three-dimensional structure of one monomer of the PCNA–p21 peptide complex, looking directly onto the face of the ring. The peptide (colored red) runs alongside the interdomain connecting loop (green). The N-terminal domain of PCNA is drawn in yellow and the C-terminal domain in plum, with five residues at the terminus shaded blue. Figure prepared using the programs MOLSCRIPT ([21]) and Raster-3D ( [2]).(b) Superimposition of the C^α trace of PCNA from S. cerevisiae (red) onto that of human PCNA (black) with bound p21 peptide (green). The orientation is similar to that in (a). Prepared using the programs O ([16]) and MOLSCRIPT ( [21]).
Figure 3.
Figure 3. Interactions at the p21–PCNA Interface(a) Schematic depiction of contacts between the peptide and PCNA. Residues of the connector loop of PCNA are shaded green, those of the C-terminus are in yellow, and other PCNA residues are in pink. A set of two water-mediated contacts is also shown (blue circles).(b) Hydrophobic interactions at the p21–PCNA interface. A set of four side chains of the p21-peptide (red) fit into hydrophobic cavities in the molecular surface of PCNA. The C^α trace of PCNA is displayed as a green tube. PCNA residues lining the pockets (shown in yellow) are: Cys-27, Met-40, Val-45, Leu-47, Ala-67, Gly-69, Leu-121, Val-123, Leu-126, Ile-128, Pro-129, 133-Tyr, Pro-234, Tyr-250, Ala-252, Pro-253, and (in green) Gln-131, which contacts the hydroxyl of the peptide tyrosine. This figure was generated using GRASP.
 
  The above figures are reprinted by permission from Cell Press: Cell (1996, 87, 297-306) copyright 1996.  
  Figures were selected by an automated process.  

Literature references that cite this PDB file's key reference

  PubMed id Reference
22382979 A.A.Armstrong, F.Mohideen, and C.D.Lima (2012).
Recognition of SUMO-modified PCNA requires tandem receptor motifs in Srs2.
  Nature, 483, 59-63.
PDB codes: 3v60 3v61 3v62
21270332 J.E.Ladner, M.Pan, J.Hurwitz, and Z.Kelman (2011).
Crystal structures of two active proliferating cell nuclear antigens (PCNAs) encoded by Thermococcus kodakaraensis.
  Proc Natl Acad Sci U S A, 108, 2711-2716.
PDB codes: 3lx1 3lx2
21143559 M.Michishita, A.Morimoto, T.Ishii, H.Komori, Y.Shiomi, Y.Higuchi, and H.Nishitani (2011).
Positively charged residues located downstream of PIP box, together with TD amino acids within PIP box, are important for CRL4(Cdt2) -mediated proteolysis.
  Genes Cells, 16, 12-22.  
21265766 S.A.MacNeill (2011).
Protein-protein interactions in the archaeal core replisome.
  Biochem Soc Trans, 39, 163-168.  
21265749 T.R.Beattie, and S.D.Bell (2011).
The role of the DNA sliding clamp in Okazaki fragment maturation in archaea and eukaryotes.
  Biochem Soc Trans, 39, 70-76.  
20713735 A.Pluciennik, L.Dzantiev, R.R.Iyer, N.Constantin, F.A.Kadyrov, and P.Modrich (2010).
PCNA function in the activation and strand direction of MutLα endonuclease in mismatch repair.
  Proc Natl Acad Sci U S A, 107, 16066-16071.  
20606006 D.H.Kim, V.N.Budhavarapu, C.R.Herrera, H.W.Nam, Y.S.Kim, and P.R.Yew (2010).
The CRL4Cdt2 ubiquitin ligase mediates the proteolysis of cyclin-dependent kinase inhibitor Xic1 through a direct association with PCNA.
  Mol Cell Biol, 30, 4120-4133.  
20823236 J.Peña-Diaz, and J.Jiricny (2010).
PCNA and MutLα: partners in crime in triplet repeat expansion?
  Proc Natl Acad Sci U S A, 107, 16409-16410.  
20385585 L.Pastushok, M.Hanna, and W.Xiao (2010).
Constitutive fusion of ubiquitin to PCNA provides DNA damage tolerance independent of translesion polymerase activities.
  Nucleic Acids Res, 38, 5047-5058.  
20453097 N.M.Dupes, B.W.Walsh, A.D.Klocko, J.S.Lenhart, H.L.Peterson, D.A.Gessert, C.E.Pavlick, and L.A.Simmons (2010).
Mutations in the Bacillus subtilis beta clamp that separate its roles in DNA replication from mismatch repair.
  J Bacteriol, 192, 3452-3463.  
20129942 S.Sugiman-Marangos, and M.S.Junop (2010).
The structure of DdrB from Deinococcus: a new fold for single-stranded DNA binding proteins.
  Nucleic Acids Res, 38, 3432-3440.
PDB code: 3kdv
20007687 W.Strzalka, A.Kaczmarek, B.Naganowska, and A.Ziemienowicz (2010).
Identification and functional analysis of PCNA1 and PCNA-like1 genes of Phaseolus coccineus.
  J Exp Bot, 61, 873-888.  
20544218 Y.Dahan, R.Rosenfeld, V.Zadiranov, and V.Irihimovitch (2010).
A proposed conserved role for an avocado FW2.2-like gene as a negative regulator of fruit cell division.
  Planta, 232, 663-676.  
20967232 Y.Fridman, N.Palgi, D.Dovrat, S.Ben-Aroya, P.Hieter, and A.Aharoni (2010).
Subtle alterations in PCNA-partner interactions severely impair DNA replication and repair.
  PLoS Biol, 8, e1000507.  
19576301 Z.Zhuang, and Y.Ai (2010).
Processivity factor of DNA polymerase and its expanding role in normal and translesion DNA synthesis.
  Biochim Biophys Acta, 1804, 1081-1093.  
19411704 A.B.Kochaniak, S.Habuchi, J.J.Loparo, D.J.Chang, K.A.Cimprich, J.C.Walter, and A.M.van Oijen (2009).
Proliferating cell nuclear antigen uses two distinct modes to move along DNA.
  J Biol Chem, 284, 17700-17710.  
19208623 A.Hishiki, H.Hashimoto, T.Hanafusa, K.Kamei, E.Ohashi, T.Shimizu, H.Ohmori, and M.Sato (2009).
Structural Basis for Novel Interactions between Human Translesion Synthesis Polymerases and Proliferating Cell Nuclear Antigen.
  J Biol Chem, 284, 10552-10560.
PDB codes: 2zvk 2zvl 2zvm
19446481 A.S.Doré, M.L.Kilkenny, N.J.Rzechorzek, and L.H.Pearl (2009).
Crystal structure of the rad9-rad1-hus1 DNA damage checkpoint complex--implications for clamp loading and regulation.
  Mol Cell, 34, 735-745.
PDB code: 3g65
19595719 C.G.Havens, and J.C.Walter (2009).
Docking of a specialized PIP Box onto chromatin-bound PCNA creates a degron for the ubiquitin ligase CRL4Cdt2.
  Mol Cell, 35, 93.  
19461205 C.X.Xu, H.Jin, Y.S.Chung, J.Y.Shin, S.K.Hwang, J.T.Kwon, S.J.Park, E.S.Lee, A.Minai-Tehrani, S.H.Chang, M.A.Woo, M.S.Noh, G.H.An, K.H.Lee, and M.H.Cho (2009).
Low dietary inorganic phosphate affects the lung growth of developing mice.
  J Vet Sci, 10, 105-113.  
19729406 D.Kumar, N.Minocha, K.Rajanala, and S.Saha (2009).
The distribution pattern of proliferating cell nuclear antigen in the nuclei of Leishmania donovani.
  Microbiology, 155, 3748-3757.  
19770505 E.Morgunova, F.C.Gray, S.A.Macneill, and R.Ladenstein (2009).
Structural insights into the adaptation of proliferating cell nuclear antigen (PCNA) from Haloferax volcanii to a high-salt environment.
  Acta Crystallogr D Biol Crystallogr, 65, 1081-1088.
PDB code: 3hi8
19170759 E.Ohashi, T.Hanafusa, K.Kamei, I.Song, J.Tomida, H.Hashimoto, C.Vaziri, and H.Ohmori (2009).
Identification of a novel REV1-interacting motif necessary for DNA polymerase kappa function.
  Genes Cells, 14, 101-111.  
19881914 F.J.López de Saro (2009).
Regulation of interactions with sliding clamps during DNA replication and repair.
  Curr Genomics, 10, 206-215.  
19698123 J.A.Winter, P.Christofi, S.Morroll, and K.A.Bunting (2009).
The crystal structure of Haloferax volcanii proliferating cell nuclear antigen reveals unique surface charge characteristics due to halophilic adaptation.
  BMC Struct Biol, 9, 55.
PDB code: 3ifv
19665013 J.Kisielewska, R.Philipova, J.Y.Huang, and M.Whitaker (2009).
MAP kinase dependent cyclinE/cdk2 activity promotes DNA replication in early sea urchin embryos.
  Dev Biol, 334, 383-394.  
19759157 J.L.Baltz, D.J.Filman, M.Ciustea, J.E.Silverman, C.L.Lautenschlager, D.M.Coen, R.P.Ricciardi, and J.M.Hogle (2009).
The crystal structure of PF-8, the DNA polymerase accessory subunit from Kaposi's sarcoma-associated herpesvirus.
  J Virol, 83, 12215-12228.
PDB codes: 3hsl 3i2m
19255439 K.Mayanagi, S.Kiyonari, M.Saito, T.Shirai, Y.Ishino, and K.Morikawa (2009).
Mechanism of replication machinery assembly as revealed by the DNA ligase-PCNA-DNA complex architecture.
  Proc Natl Acad Sci U S A, 106, 4647-4652.  
19801550 K.Murayama, S.Nakayama, M.Kato-Murayama, R.Akasaka, N.Ohbayashi, Y.Kamewari-Hayami, T.Terada, M.Shirouzu, T.Tsurumi, and S.Yokoyama (2009).
Crystal structure of epstein-barr virus DNA polymerase processivity factor BMRF1.
  J Biol Chem, 284, 35896-35905.
PDB code: 2z0l
19213612 L.B.Bloom (2009).
Loading clamps for DNA replication and repair.
  DNA Repair (Amst), 8, 570-578.  
19165719 M.K.Yoon, V.Venkatachalam, A.Huang, B.S.Choi, C.M.Stultz, and J.J.Chou (2009).
Residual structure within the disordered C-terminal segment of p21(Waf1/Cip1/Sdi1) and its implications for molecular recognition.
  Protein Sci, 18, 337-347.  
19535328 M.Xu, L.Bai, Y.Gong, W.Xie, H.Hang, and T.Jiang (2009).
Structure and functional implications of the human rad9-hus1-rad1 cell cycle checkpoint complex.
  J Biol Chem, 284, 20457-20461.
PDB code: 3ggr
19332548 S.A.Stuart, and J.Y.Wang (2009).
Ionizing Radiation Induces ATM-independent Degradation of p21Cip1 in Transformed Cells.
  J Biol Chem, 284, 15061-15070.  
19285992 S.Chen, M.K.Levin, M.Sakato, Y.Zhou, and M.M.Hingorani (2009).
Mechanism of ATP-driven PCNA clamp loading by S. cerevisiae RFC.
  J Mol Biol, 388, 431-442.  
19822659 T.Rolef Ben-Shahar, A.G.Castillo, M.J.Osborne, K.L.Borden, J.Kornblatt, and A.Verreault (2009).
Two fundamentally distinct PCNA interaction peptides contribute to chromatin assembly factor 1 function.
  Mol Cell Biol, 29, 6353-6365.  
19388052 W.Strzalka, T.Oyama, K.Tori, and K.Morikawa (2009).
Crystal structures of the Arabidopsis thaliana proliferating cell nuclear antigen 1 and 2 proteins complexed with the human p21 C-terminal segment.
  Protein Sci, 18, 1072-1080.
PDB codes: 2zvv 2zvw
19717601 Y.H.Chen, Y.Lin, A.Yoshinaga, B.Chhotani, J.L.Lorenzini, A.A.Crofts, S.Mei, R.I.Mackie, Y.Ishino, and I.K.Cann (2009).
Molecular analyses of a three-subunit euryarchaeal clamp loader complex from Methanosarcina acetivorans.
  J Bacteriol, 191, 6539-6549.  
19419956 Y.Yu, J.P.Cai, B.Tu, L.Wu, Y.Zhao, X.Liu, L.Li, M.A.McNutt, J.Feng, Q.He, Y.Yang, H.Wang, M.Sekiguchi, and W.G.Zhu (2009).
Proliferating Cell Nuclear Antigen Is Protected from Degradation by Forming a Complex with MutT Homolog2.
  J Biol Chem, 284, 19310-19320.  
  18765913 A.Hishiki, T.Shimizu, A.Serizawa, H.Ohmori, M.Sato, and H.Hashimoto (2008).
Crystallographic study of G178S mutant of human proliferating cell nuclear antigen.
  Acta Crystallogr Sect F Struct Biol Cryst Commun, 64, 819-821.  
  18931444 A.Hishiki, T.Shimizu, T.Hanafusa, H.Ohmori, M.Sato, and H.Hashimoto (2008).
Initial crystallographic study of human PCNA in complex with a peptide containing the noncanonical PIP-box sequence of human DNA polymerase iota.
  Acta Crystallogr Sect F Struct Biol Cryst Commun, 64, 954-956.  
18498247 B.J.Kim, and H.Lee (2008).
Lys-110 is essential for targeting PCNA to replication and repair foci, and the K110A mutant activates apoptosis.
  Biol Cell, 100, 675-686.  
18178550 G.Komazin-Meredith, W.L.Santos, D.J.Filman, J.M.Hogle, G.L.Verdine, and D.M.Coen (2008).
The positively charged surface of herpes simplex virus UL42 mediates DNA binding.
  J Biol Chem, 283, 6154-6161.  
18494853 H.J.Anderson, E.J.Vonarx, L.Pastushok, M.Nakagawa, A.Katafuchi, P.Gruz, A.Di Rubbo, D.M.Grice, M.J.Osmond, A.N.Sakamoto, T.Nohmi, W.Xiao, and B.A.Kunz (2008).
Arabidopsis thaliana Y-family DNA polymerase eta catalyses translesion synthesis and interacts functionally with PCNA2.
  Plant J, 55, 895-908.  
18242150 H.Yang, and J.H.Miller (2008).
Deletion of dnaN1 generates a mutator phenotype in Bacillus anthracis.
  DNA Repair (Amst), 7, 507-514.  
18445651 J.D.Schrag, S.Jiralerspong, M.Banville, M.L.Jaramillo, and M.D.O'Connor-McCourt (2008).
The crystal structure and dimerization interface of GADD45gamma.
  Proc Natl Acad Sci U S A, 105, 6566-6571.
PDB code: 3cg6
18448427 J.Scorah, M.Q.Dong, J.R.Yates, M.Scott, D.Gillespie, and C.H.McGowan (2008).
A conserved proliferating cell nuclear antigen-interacting protein sequence in Chk1 is required for checkpoint function.
  J Biol Chem, 283, 17250-17259.  
18931783 N.Y.Yao, and M.O'Donnell (2008).
Replisome dynamics and use of DNA trombone loops to bypass replication blocks.
  Mol Biosyst, 4, 1075-1084.  
18263614 O.Cazzalini, P.Perucca, M.Savio, D.Necchi, L.Bianchi, L.A.Stivala, B.Ducommun, A.I.Scovassi, and E.Prosperi (2008).
Interaction of p21(CDKN1A) with PCNA regulates the histone acetyltransferase activity of p300 in nucleotide excision repair.
  Nucleic Acids Res, 36, 1713-1722.  
18037921 P.Taylor, E.Blackburn, Y.G.Sheng, S.Harding, K.Y.Hsin, D.Kan, S.Shave, and M.D.Walkinshaw (2008).
Ligand discovery and virtual screening using the program LIDAEUS.
  Br J Pharmacol, 153, S55-S67.  
18678908 R.E.Georgescu, O.Yurieva, S.S.Kim, J.Kuriyan, X.P.Kong, and M.O'Donnell (2008).
Structure of a small-molecule inhibitor of a DNA polymerase sliding clamp.
  Proc Natl Acad Sci U S A, 105, 11116-11121.
PDB codes: 3d1e 3d1f 3d1g
18191219 R.E.Georgescu, S.S.Kim, O.Yurieva, J.Kuriyan, X.P.Kong, and M.O'Donnell (2008).
Structure of a sliding clamp on DNA.
  Cell, 132, 43-54.
PDB code: 3bep
18326858 R.R.Iyer, T.J.Pohlhaus, S.Chen, G.L.Hura, L.Dzantiev, L.S.Beese, and P.Modrich (2008).
The MutSalpha-proliferating cell nuclear antigen interaction in human DNA mismatch repair.
  J Biol Chem, 283, 13310-13319.  
18617267 S.Merluzzi, G.Gri, V.Gattei, M.Pagano, and C.Pucillo (2008).
APE/Ref-1 makes fine-tuning of CD40-induced B cell proliferation.
  Mol Immunol, 45, 3731-3739.  
18556658 T.A.Laurence, Y.Kwon, A.Johnson, C.W.Hollars, M.O'Donnell, J.A.Camarero, and D.Barsky (2008).
Motion of a DNA sliding clamp observed by single molecule fluorescence spectroscopy.
  J Biol Chem, 283, 22895-22906.  
18703842 V.Hlinkova, G.Xing, J.Bauer, Y.J.Shin, I.Dionne, K.R.Rajashankar, S.D.Bell, and H.Ling (2008).
Structures of monomeric, dimeric and trimeric PCNA: PCNA-ring assembly and opening.
  Acta Crystallogr D Biol Crystallogr, 64, 941-949.
PDB codes: 2ijx 2io4 2nti
  19023449 X.Chen, T.P.Patel, V.I.Simirskii, and M.K.Duncan (2008).
PCNA interacts with Prox1 and represses its transcriptional activity.
  Mol Vis, 14, 2076-2086.  
17617644 A.Loregian, E.Sinigalia, B.Mercorelli, G.Palù, and D.M.Coen (2007).
Binding parameters and thermodynamics of the interaction of the human cytomegalovirus DNA polymerase accessory protein, UL44, with DNA: implications for the processivity mechanism.
  Nucleic Acids Res, 35, 4779-4791.  
17512402 G.L.Moldovan, B.Pfander, and S.Jentsch (2007).
PCNA, the maestro of the replication fork.
  Cell, 129, 665-679.  
17937809 H.P.Easwaran, H.Leonhardt, and M.C.Cardoso (2007).
Distribution of DNA replication proteins in Drosophila cells.
  BMC Cell Biol, 8, 42.  
17251197 J.L.Parker, A.B.Bielen, I.Dikic, and H.D.Ulrich (2007).
Contributions of ubiquitin- and PCNA-binding domains to the activity of Polymerase eta in Saccharomyces cerevisiae.
  Nucleic Acids Res, 35, 881-889.  
17426134 J.Y.Ha, H.K.Kim, d.o. .J.Kim, K.H.Kim, S.J.Oh, H.H.Lee, H.J.Yoon, H.K.Song, and S.W.Suh (2007).
The recombination-associated protein RdgC adopts a novel toroidal architecture for DNA binding.
  Nucleic Acids Res, 35, 2671-2681.
PDB code: 2owy
17325029 J.Zhan, J.B.Easton, S.Huang, A.Mishra, L.Xiao, E.R.Lacy, R.W.Kriwacki, and P.J.Houghton (2007).
Negative regulation of ASK1 by p21Cip1 involves a small domain that includes Serine 98 that is phosphorylated by ASK1 in vivo.
  Mol Cell Biol, 27, 3530-3541.  
17501915 P.Guo, and T.J.Lee (2007).
Viral nanomotors for packaging of dsDNA and dsRNA.
  Mol Microbiol, 64, 886-903.  
17531814 S.S.Shell, C.D.Putnam, and R.D.Kolodner (2007).
The N terminus of Saccharomyces cerevisiae Msh6 is an unstructured tether to PCNA.
  Mol Cell, 26, 565-578.  
17308348 S.Vijayakumar, B.R.Chapados, K.H.Schmidt, R.D.Kolodner, J.A.Tainer, and A.E.Tomkinson (2007).
The C-terminal domain of yeast PCNA is required for physical and functional interactions with Cdc9 DNA ligase.
  Nucleic Acids Res, 35, 1624-1637.
PDB code: 2od8
17488107 V.Vacic, C.J.Oldfield, A.Mohan, P.Radivojac, M.S.Cortese, V.N.Uversky, and A.K.Dunker (2007).
Characterization of molecular recognition features, MoRFs, and their binding partners.
  J Proteome Res, 6, 2351-2366.  
17932049 Y.Masuda, M.Suzuki, J.Piao, Y.Gu, T.Tsurimoto, and K.Kamiya (2007).
Dynamics of human replication factors in the elongation phase of DNA replication.
  Nucleic Acids Res, 35, 6904-6916.  
17652513 Y.P.Chang, G.Wang, V.Bermudez, J.Hurwitz, and X.S.Chen (2007).
Crystal structure of the GINS complex and functional insights into its role in DNA replication.
  Proc Natl Acad Sci U S A, 104, 12685-12690.
PDB code: 2q9q
17431791 Y.T.Oh, K.H.Chun, B.D.Park, J.S.Choi, and S.K.Lee (2007).
Regulation of cyclin-dependent kinase inhibitor p21WAF1/CIP1 by protein kinase Cdelta-mediated phosphorylation.
  Apoptosis, 12, 1339-1347.  
16980295 A.Johnson, N.Y.Yao, G.D.Bowman, J.Kuriyan, and M.O'Donnell (2006).
The replication factor C clamp loader requires arginine finger sensors to drive DNA binding and proliferating cell nuclear antigen loading.
  J Biol Chem, 281, 35531-35543.  
16945955 A.S.Doré, M.L.Kilkenny, S.A.Jones, A.W.Oliver, S.M.Roe, S.D.Bell, and L.H.Pearl (2006).
Structure of an archaeal PCNA1-PCNA2-FEN1 complex: elucidating PCNA subunit and client enzyme specificity.
  Nucleic Acids Res, 34, 4515-4526.
PDB code: 2izo
16371349 B.A.Appleton, J.Brooks, A.Loregian, D.J.Filman, D.M.Coen, and J.M.Hogle (2006).
Crystal structure of the cytomegalovirus DNA polymerase subunit UL44 in complex with the C terminus from the catalytic subunit. Differences in structure and function relative to unliganded UL44.
  J Biol Chem, 281, 5224-5232.
PDB code: 1yyp
16955075 C.Indiani, and M.O'Donnell (2006).
The replication clamp-loading machine at work in the three domains of life.
  Nat Rev Mol Cell Biol, 7, 751-761.  
16888766 D.J.Hoelz, R.J.Arnold, L.E.Dobrolecki, W.Abdel-Aziz, A.P.Loehrer, M.V.Novotny, L.Schnaper, R.J.Hickey, and L.H.Malkas (2006).
The discovery of labile methyl esters on proliferating cell nuclear antigen by MS/MS.
  Proteomics, 6, 4808-4816.  
17158702 E.R.Barry, and S.D.Bell (2006).
DNA replication in the archaea.
  Microbiol Mol Biol Rev, 70, 876-887.  
16407840 E.Warbrick (2006).
A functional analysis of PCNA-binding peptides derived from protein sequence, interaction screening and rational design.
  Oncogene, 25, 2850-2859.  
16934511 G.L.Moldovan, B.Pfander, and S.Jentsch (2006).
PCNA controls establishment of sister chromatid cohesion during S phase.
  Mol Cell, 23, 723-732.  
16407842 G.Soria, O.Podhajcer, C.Prives, and V.Gottifredi (2006).
P21Cip1/WAF1 downregulation is required for efficient PCNA ubiquitination after UV irradiation.
  Oncogene, 25, 2829-2838.  
16828554 H.Remaut, and G.Waksman (2006).
Protein-protein interaction through beta-strand addition.
  Trends Biochem Sci, 31, 436-444.  
17071716 I.Ivanov, B.R.Chapados, J.A.McCammon, and J.A.Tainer (2006).
Proliferating cell nuclear antigen loaded onto double-stranded DNA: dynamics, minor groove interactions and functional implications.
  Nucleic Acids Res, 34, 6023-6033.  
16403212 M.A.Argiriadi, E.R.Goedken, I.Bruck, M.O'Donnell, and J.Kuriyan (2006).
Crystal structure of a DNA polymerase sliding clamp from a Gram-positive bacterium.
  BMC Struct Biol, 6, 2.
PDB code: 2avt
16608854 N.Y.Yao, A.Johnson, G.D.Bowman, J.Kuriyan, and M.O'Donnell (2006).
Mechanism of proliferating cell nuclear antigen clamp opening by replication factor C.
  J Biol Chem, 281, 17528-17539.  
16636661 O.Ohlenschläger, T.Seiboth, H.Zengerling, L.Briese, A.Marchanka, R.Ramachandran, M.Baum, M.Korbas, W.Meyer-Klaucke, M.Dürst, and M.Görlach (2006).
Solution structure of the partially folded high-risk human papilloma virus 45 oncoprotein E7.
  Oncogene, 25, 5953-5959.
PDB codes: 2ewl 2f8b
16782870 S.Das-Bradoo, R.M.Ricke, and A.K.Bielinsky (2006).
Interaction between PCNA and diubiquitinated Mcm10 is essential for cell growth in budding yeast.
  Mol Cell Biol, 26, 4806-4817.  
15952889 A.Johnson, and M.O'Donnell (2005).
Cellular DNA replicases: components and dynamics at the replication fork.
  Annu Rev Biochem, 74, 283-315.  
15798220 B.C.Dash, and W.S.El-Deiry (2005).
Phosphorylation of p21 in G2/M promotes cyclin B-Cdc2 kinase activity.
  Mol Cell Biol, 25, 3364-3387.  
15975933 B.Dublet, A.Ruello, M.Pederzoli, E.Hajjar, M.Courbebaisse, S.Canteloup, N.Reuter, and V.Witko-Sarsat (2005).
Cleavage of p21/WAF1/CIP1 by proteinase 3 modulates differentiation of a monocytic cell line. Molecular analysis of the cleavage site.
  J Biol Chem, 280, 30242-30253.  
16168375 C.Indiani, P.McInerney, R.Georgescu, M.F.Goodman, and M.O'Donnell (2005).
A sliding-clamp toolbelt binds high- and low-fidelity DNA polymerases simultaneously.
  Mol Cell, 19, 805-815.  
15533944 D.Y.Chang, and A.L.Lu (2005).
Interaction of checkpoint proteins Hus1/Rad1/Rad9 with DNA base excision repair enzyme MutY homolog in fission yeast, Schizosaccharomyces pombe.
  J Biol Chem, 280, 408-417.  
16079237 E.W.Refsland, and D.M.Livingston (2005).
Interactions among DNA ligase I, the flap endonuclease and proliferating cell nuclear antigen in the expansion and contraction of CAG repeat tracts in yeast.
  Genetics, 171, 923-934.  
15681588 G.Kontopidis, S.Y.Wu, D.I.Zheleva, P.Taylor, C.McInnes, D.P.Lane, P.M.Fischer, and M.D.Walkinshaw (2005).
Structural and biochemical studies of human proliferating cell nuclear antigen complexes provide a rationale for cyclin association and inhibitor design.
  Proc Natl Acad Sci U S A, 102, 1871-1876.
PDB codes: 1vyj 1vym 1w60
16172520 H.Nishida, S.Ishino, T.Miyata, K.Morikawa, and Y.Ishino (2005).
Identification of the critical region in replication factor C from Pyrococcus furiosus for the stable complex formation with proliferating cell nuclear antigen and DNA.
  Genes Genet Syst, 80, 83-93.  
16188889 J.S.Sung, M.S.DeMott, and B.Demple (2005).
Long-patch base excision DNA repair of 2-deoxyribonolactone prevents the formation of DNA-protein cross-links with DNA polymerase beta.
  J Biol Chem, 280, 39095-39103.  
15726626 J.Zhou, X.Hu, X.Xiong, X.Liu, Y.Liu, K.Ren, T.Jiang, X.Hu, and J.Zhang (2005).
Cloning of two rat PDIP1 related genes and their interactions with proliferating cell nuclear antigen.
  J Exp Zoolog A Comp Exp Biol, 303, 227-240.  
16118211 L.C.Chuang, and P.R.Yew (2005).
Proliferating cell nuclear antigen recruits cyclin-dependent kinase inhibitor Xic1 to DNA and couples its proteolysis to DNA polymerase switching.
  J Biol Chem, 280, 35299-35309.  
15650400 M.A.O'Reilly (2005).
Redox activation of p21Cip1/WAF1/Sdi1: a multifunctional regulator of cell survival and death.
  Antioxid Redox Signal, 7, 108-118.  
15966901 N.Shimazaki, T.Yazaki, T.Kubota, A.Sato, A.Nakamura, S.Kurei, S.Toji, K.Tamai, and O.Koiwai (2005).
DNA polymerase lambda directly binds to proliferating cell nuclear antigen through its confined C-terminal region.
  Genes Cells, 10, 705-715.  
15659404 O.Gangisetty, C.E.Jones, M.Bhagwat, and N.G.Nossal (2005).
Maturation of bacteriophage T4 lagging strand fragments depends on interaction of T4 RNase H with T4 32 protein rather than the T4 gene 45 clamp.
  J Biol Chem, 280, 12876-12887.  
16216562 R.Ko, and S.E.Bennett (2005).
Physical and functional interaction of human nuclear uracil-DNA glycosylase with proliferating cell nuclear antigen.
  DNA Repair (Amst), 4, 1421-1431.  
16169903 S.L.Kazmirski, Y.Zhao, G.D.Bowman, M.O'donnell, and J.Kuriyan (2005).
Out-of-plane motions in open sliding clamps: molecular dynamics simulations of eukaryotic and archaeal proliferating cell nuclear antigen.
  Proc Natl Acad Sci U S A, 102, 13801-13806.  
15805117 S.N.Naryzhny, H.Zhao, and H.Lee (2005).
Proliferating cell nuclear antigen (PCNA) may function as a double homotrimer complex in the mammalian cell.
  J Biol Chem, 280, 13888-13894.  
15548520 S.Narayan, A.S.Jaiswal, and R.Balusu (2005).
Tumor suppressor APC blocks DNA polymerase beta-dependent strand displacement synthesis during long patch but not short patch base excision repair and increases sensitivity to methylmethane sulfonate.
  J Biol Chem, 280, 6942-6949.  
15616578 S.Sakurai, K.Kitano, H.Yamaguchi, K.Hamada, K.Okada, K.Fukuda, M.Uchida, E.Ohtsuka, H.Morioka, and T.Hakoshima (2005).
Structural basis for recruitment of human flap endonuclease 1 to PCNA.
  EMBO J, 24, 683-693.
PDB code: 1ul1
15342632 A.E.Vidal, P.Kannouche, V.N.Podust, W.Yang, A.R.Lehmann, and R.Woodgate (2004).
Proliferating cell nuclear antigen-dependent coordination of the biological functions of human DNA polymerase iota.
  J Biol Chem, 279, 48360-48368.  
14610068 A.K.Snyder, C.R.Williams, A.Johnson, M.O'Donnell, and L.B.Bloom (2004).
Mechanism of loading the Escherichia coli DNA polymerase III sliding clamp: II. Uncoupling the beta and DNA binding activities of the gamma complex.
  J Biol Chem, 279, 4386-4393.  
15308704 A.Loregian, B.A.Appleton, J.M.Hogle, and D.M.Coen (2004).
Specific residues in the connector loop of the human cytomegalovirus DNA polymerase accessory protein UL44 are crucial for interaction with the UL54 catalytic subunit.
  J Virol, 78, 9084-9092.  
15479830 B.Bagewadi, S.Chen, S.K.Lal, N.R.Choudhury, and S.K.Mukherjee (2004).
PCNA interacts with Indian mung bean yellow mosaic virus rep and downregulates Rep activity.
  J Virol, 78, 11890-11903.  
15116069 B.I.Lee, K.H.Kim, S.J.Park, S.H.Eom, H.K.Song, and S.W.Suh (2004).
Ring-shaped architecture of RecR: implications for its role in homologous recombinational DNA repair.
  EMBO J, 23, 2029-2038.
PDB code: 1vdd
14610067 C.R.Williams, A.K.Snyder, P.Kuzmic, M.O'Donnell, and L.B.Bloom (2004).
Mechanism of loading the Escherichia coli DNA polymerase III sliding clamp: I. Two distinct activities for individual ATP sites in the gamma complex.
  J Biol Chem, 279, 4376-4385.  
15065653 F.López de Saro, R.E.Georgescu, F.Leu, and M.O'Donnell (2004).
Protein trafficking on sliding clamps.
  Philos Trans R Soc Lond B Biol Sci, 359, 25-30.  
15201901 G.D.Bowman, M.O'Donnell, and J.Kuriyan (2004).
Structural analysis of a eukaryotic sliding DNA clamp-clamp loader complex.
  Nature, 429, 724-730.
PDB code: 1sxj
15342630 H.M.Tseng, and A.E.Tomkinson (2004).
Processing and joining of DNA ends coordinated by interactions among Dnl4/Lif1, Pol4, and FEN-1.
  J Biol Chem, 279, 47580-47588.  
15364574 M.Magdalena Coman, M.Jin, R.Ceapa, J.Finkelstein, M.O'Donnell, B.T.Chait, and M.M.Hingorani (2004).
Dual functions, clamp opening and primer-template recognition, define a key clamp loader subunit.
  J Mol Biol, 342, 1457-1469.  
15149598 P.L.Kannouche, J.Wing, and A.R.Lehmann (2004).
Interaction of human DNA polymerase eta with monoubiquitinated PCNA: a possible mechanism for the polymerase switch in response to DNA damage.
  Mol Cell, 14, 491-500.  
15543136 R.A.Poot, L.Bozhenok, D.L.van den Berg, S.Steffensen, F.Ferreira, M.Grimaldi, N.Gilbert, J.Ferreira, and P.D.Varga-Weisz (2004).
The Williams syndrome transcription factor interacts with PCNA to target chromatin remodelling by ISWI to replication foci.
  Nat Cell Biol, 6, 1236-1244.  
12832762 A.J.Oakley, P.Prosselkov, G.Wijffels, J.L.Beck, M.C.Wilce, and N.E.Dixon (2003).
Flexibility revealed by the 1.85 A crystal structure of the beta sliding-clamp subunit of Escherichia coli DNA polymerase III.
  Acta Crystallogr D Biol Crystallogr, 59, 1192-1199.
PDB code: 1mmi
14633999 F.J.López de Saro, R.E.Georgescu, M.F.Goodman, and M.O'Donnell (2003).
Competitive processivity-clamp usage by DNA polymerases during DNA replication and repair.
  EMBO J, 22, 6408-6418.  
14630952 F.J.López de Saro, R.E.Georgescu, and M.O'Donnell (2003).
A peptide switch regulates DNA polymerase processivity.
  Proc Natl Acad Sci U S A, 100, 14689-14694.  
12620221 F.P.Leu, R.Georgescu, and M.O'Donnell (2003).
Mechanism of the E. coli tau processivity switch during lagging-strand synthesis.
  Mol Cell, 11, 315-327.  
12930846 I.Frouin, G.Maga, M.Denegri, F.Riva, M.Savio, S.Spadari, E.Prosperi, and A.I.Scovassi (2003).
Human proliferating cell nuclear antigen, poly(ADP-ribose) polymerase-1, and p21waf1/cip1. A dynamic exchange of partners.
  J Biol Chem, 278, 39265-39268.  
14592985 K.A.Bunting, S.M.Roe, and L.H.Pearl (2003).
Structural basis for recruitment of translesion DNA polymerase Pol IV/DinB to the beta-clamp.
  EMBO J, 22, 5883-5892.
PDB code: 1unn
12896972 L.Deeds, S.Teodorescu, M.Chu, Q.Yu, and C.Y.Chen (2003).
A p53-independent G1 cell cycle checkpoint induced by the suppression of protein kinase C alpha and theta isoforms.
  J Biol Chem, 278, 39782-39793.  
12522211 L.Liu, E.M.Rodriguez-Belmonte, N.Mazloum, B.Xie, and M.Y.Lee (2003).
Identification of a novel protein, PDIP38, that interacts with the p50 subunit of DNA polymerase delta and proliferating cell nuclear antigen.
  J Biol Chem, 278, 10041-10047.  
14530260 N.Yao, L.Coryell, D.Zhang, R.E.Georgescu, J.Finkelstein, M.M.Coman, M.M.Hingorani, and M.O'Donnell (2003).
Replication factor C clamp loader subunit arrangement within the circular pentamer and its attachment points to proliferating cell nuclear antigen.
  J Biol Chem, 278, 50744-50753.  
12435741 P.J.Lau, and R.D.Kolodner (2003).
Transfer of the MSH2.MSH6 complex from proliferating cell nuclear antigen to mispaired bases in DNA.
  J Biol Chem, 278, 14-17.  
12937166 R.Hong, and D.Chakravarti (2003).
The human proliferating Cell nuclear antigen regulates transcriptional coactivator p300 activity and promotes transcriptional repression.
  J Biol Chem, 278, 44505-44513.  
12548282 R.J.Fletcher, B.E.Bishop, R.P.Leon, R.A.Sclafani, C.M.Ogata, and X.S.Chen (2003).
The structure and function of MCM from archaeal M. Thermoautotrophicum.
  Nat Struct Biol, 10, 160-167.
PDB code: 1ltl
12649440 S.Matsumiya, S.Ishino, Y.Ishino, and K.Morikawa (2003).
Intermolecular ion pairs maintain the toroidal structure of Pyrococcus furiosus PCNA.
  Protein Sci, 12, 823-831.
PDB codes: 1iz4 1iz5
12777816 S.Sakurai, K.Kitano, K.Okada, K.Hamada, H.Morioka, and T.Hakoshima (2003).
Preparation and crystallization of human flap endonuclease FEN-1 in complex with proliferating-cell nuclear antigen, PCNA.
  Acta Crystallogr D Biol Crystallogr, 59, 933-935.  
12605602 T.L.Gururaja, W.Li, D.G.Payan, and D.C.Anderson (2003).
Utility of peptide-protein affinity complexes in proteomics: identification of interaction partners of a tumor suppressor peptide.
  J Pept Res, 61, 163-176.  
12964161 V.Esteve, N.Canela, A.Rodriguez-Vilarrupla, R.Aligué, N.Agell, I.Mingarro, O.Bachs, and E.Pérez-Payá (2003).
The structural plasticity of the C terminus of p21Cip1 is a determinant for target protein recognition.
  Chembiochem, 4, 863-869.  
12730133 Y.Kubota, Y.Takase, Y.Komori, Y.Hashimoto, T.Arata, Y.Kamimura, H.Araki, and H.Takisawa (2003).
A novel ring-like complex of Xenopus proteins essential for the initiation of DNA replication.
  Genes Dev, 17, 1141-1152.  
12504011 A.Sporbert, A.Gahl, R.Ankerhold, H.Leonhardt, and M.C.Cardoso (2002).
DNA polymerase clamp shows little turnover at established replication sites but sequential de novo assembly at adjacent origin clusters.
  Mol Cell, 10, 1355-1365.  
12237462 C.Venclovas, M.E.Colvin, and M.P.Thelen (2002).
Molecular modeling-based analysis of interactions in the RFC-dependent clamp-loading process.
  Protein Sci, 11, 2403-2416.  
11756556 D.C.Krawitz, T.Kama, and P.D.Kaufman (2002).
Chromatin assembly factor I mutants defective for PCNA binding require Asf1/Hir proteins for silencing.
  Mol Cell Biol, 22, 614-625.  
12383116 D.I.Zheleva, C.McInnes, A.L.Gavine, N.Z.Zhelev, P.M.Fischer, and D.P.Lane (2002).
Highly potent p21(WAF1)-derived peptide inhibitors of CDK-mediated pRb phosphorylation: delineation and structural insight into their interactions with cyclin A.
  J Pept Res, 60, 257-270.  
11959500 D.Jeruzalmi, M.O'Donnell, and J.Kuriyan (2002).
Clamp loaders and sliding clamps.
  Curr Opin Struct Biol, 12, 217-224.  
11805113 D.Y.Chang, and A.L.Lu (2002).
Functional interaction of MutY homolog with proliferating cell nuclear antigen in fission yeast, Schizosaccharomyces pombe.
  J Biol Chem, 277, 11853-11858.  
11927597 H.Yang, J.H.Chiang, S.Fitz-Gibbon, M.Lebel, A.A.Sartori, J.Jiricny, M.M.Slupska, and J.H.Miller (2002).
Direct interaction between uracil-DNA glycosylase and a proliferating cell nuclear antigen homolog in the crenarchaeon Pyrobaculum aerophilum.
  J Biol Chem, 277, 22271-22278.  
12192046 I.Unk, L.Haracska, X.V.Gomes, P.M.Burgers, L.Prakash, and S.Prakash (2002).
Stimulation of 3'-->5' exonuclease and 3'-phosphodiesterase activities of yeast apn2 by proliferating cell nuclear antigen.
  Mol Cell Biol, 22, 6480-6486.  
11907025 J.D.Griffith, L.A.Lindsey-Boltz, and A.Sancar (2002).
Structures of the human Rad17-replication factor C and checkpoint Rad 9-1-1 complexes visualized by glycerol spray/low voltage microscopy.
  J Biol Chem, 277, 15233-15236.  
11790738 K.Daimon, Y.Kawarabayasi, H.Kikuchi, Y.Sako, and Y.Ishino (2002).
Three proliferating cell nuclear antigen-like proteins found in the hyperthermophilic archaeon Aeropyrum pernix: interactions with the two DNA polymerases.
  J Bacteriol, 184, 687-694.  
12239216 K.H.Schmidt, K.L.Derry, and R.D.Kolodner (2002).
Saccharomyces cerevisiae RRM3, a 5' to 3' DNA helicase, physically interacts with proliferating cell nuclear antigen.
  J Biol Chem, 277, 45331-45337.  
11959982 M.D.Sutton, I.Narumi, and G.C.Walker (2002).
Posttranslational modification of the umuD-encoded subunit of Escherichia coli DNA polymerase V regulates its interactions with the beta processivity clamp.
  Proc Natl Acad Sci U S A, 99, 5307-5312.  
12415300 M.J.Davey, D.Jeruzalmi, J.Kuriyan, and M.O'Donnell (2002).
Motors and switches: AAA+ machines within the replisome.
  Nat Rev Mol Cell Biol, 3, 826-835.  
11805086 M.Motz, I.Kober, C.Girardot, E.Loeser, U.Bauer, M.Albers, G.Moeckel, E.Minch, H.Voss, C.Kilger, and M.Koegl (2002).
Elucidation of an archaeal replication protein network to generate enhanced PCR enzymes.
  J Biol Chem, 277, 16179-16188.  
12296822 S.Matsumiya, S.Ishino, Y.Ishino, and K.Morikawa (2002).
Physical interaction between proliferating cell nuclear antigen and replication factor C from Pyrococcus furiosus.
  Genes Cells, 7, 911-922.
PDB code: 1isq
12171929 S.Ohta, Y.Shiomi, K.Sugimoto, C.Obuse, and T.Tsurimoto (2002).
A proteomics approach to identify proliferating cell nuclear antigen (PCNA)-binding proteins in human cell lysates. Identification of the human CHL12/RFCs2-5 complex as a novel PCNA-binding protein.
  J Biol Chem, 277, 40362-40367.  
12045093 U.Hubscher, G.Maga, and S.Spadari (2002).
Eukaryotic DNA polymerases.
  Annu Rev Biochem, 71, 133-163.  
11986310 X.Lu, C.K.Tan, J.Q.Zhou, M.You, L.M.Carastro, K.M.Downey, and A.G.So (2002).
Direct interaction of proliferating cell nuclear antigen with the small subunit of DNA polymerase delta.
  J Biol Chem, 277, 24340-24345.  
11756412 Y.Li, D.Dowbenko, and L.A.Lasky (2002).
AKT/PKB phosphorylation of p21Cip/WAF1 enhances protein stability of p21Cip/WAF1 and promotes cell survival.
  J Biol Chem, 277, 11352-11361.  
11863428 Y.Xue, G.C.Ratcliff, H.Wang, P.R.Davis-Searles, M.D.Gray, D.A.Erie, and M.R.Redinbo (2002).
A minimal exonuclease domain of WRN forms a hexamer on DNA and possesses both 3'- 5' exonuclease and 5'-protruding strand endonuclease activities.
  Biochemistry, 41, 2901-2912.  
11573000 B.P.Dalrymple, K.Kongsuwan, G.Wijffels, N.E.Dixon, and P.A.Jennings (2001).
A universal protein-protein interaction motif in the eubacterial DNA replication and repair systems.
  Proc Natl Acad Sci U S A, 98, 11627-11632.  
11525729 D.Jeruzalmi, M.O'Donnell, and J.Kuriyan (2001).
Crystal structure of the processivity clamp loader gamma (gamma) complex of E. coli DNA polymerase III.
  Cell, 106, 429-441.
PDB code: 1jr3
11525728 D.Jeruzalmi, O.Yurieva, Y.Zhao, M.Young, J.Stewart, M.Hingorani, M.O'Donnell, and J.Kuriyan (2001).
Mechanism of processivity clamp opening by the delta subunit wrench of the clamp loader complex of E. coli DNA polymerase III.
  Cell, 106, 417-428.
PDB codes: 1jqj 1jql
11459978 F.J.López de Saro, and M.O'Donnell (2001).
Interaction of the beta sliding clamp with MutS, ligase, and DNA polymerase I.
  Proc Natl Acad Sci U S A, 98, 8376-8380.  
11274057 H.E.Kleczkowska, G.Marra, T.Lettieri, and J.Jiricny (2001).
hMSH3 and hMSH6 interact with PCNA and colocalize with it to replication foci.
  Genes Dev, 15, 724-736.  
11593007 H.He, C.K.Tan, K.M.Downey, and A.G.So (2001).
A tumor necrosis factor alpha- and interleukin 6-inducible protein that interacts with the small subunit of DNA polymerase delta and proliferating cell nuclear antigen.
  Proc Natl Acad Sci U S A, 98, 11979-11984.  
  11178284 I.Bruck, and M.O'Donnell (2001).
The ring-type polymerase sliding clamp family.
  Genome Biol, 2, REVIEWS3001.  
11412995 J.A.Sharp, E.T.Fouts, D.C.Krawitz, and P.D.Kaufman (2001).
Yeast histone deposition protein Asf1p requires Hir proteins and PCNA for heterochromatic silencing.
  Curr Biol, 11, 463-473.  
11573082 L.B.Bloom, and M.F.Goodman (2001).
A sliding clamp monkey wrench.
  Nat Struct Biol, 8, 829-831.  
11463845 L.Rössig, A.S.Jadidi, C.Urbich, C.Badorff, A.M.Zeiher, and S.Dimmeler (2001).
Akt-dependent phosphorylation of p21(Cip1) regulates PCNA binding and proliferation of endothelial cells.
  Mol Cell Biol, 21, 5644-5657.  
11719243 M.O'Donnell, D.Jeruzalmi, and J.Kuriyan (2001).
Clamp loader structure predicts the architecture of DNA polymerase III holoenzyme and RFC.
  Curr Biol, 11, R935-R946.  
11504721 S.C.Alley, M.A.Trakselis, M.U.Mayer, F.T.Ishmael, A.D.Jones, and S.J.Benkovic (2001).
Building a replisome solution structure by elucidation of protein-protein interactions in the bacteriophage T4 DNA polymerase holoenzyme.
  J Biol Chem, 276, 39340-39349.  
11551933 S.E.Bennett, J.S.Sung, and D.W.Mosbaugh (2001).
Fidelity of uracil-initiated base excision DNA repair in DNA polymerase beta-proficient and -deficient mouse embryonic fibroblast cell extracts.
  J Biol Chem, 276, 42588-42600.  
11554927 S.Ibe, K.Fujita, T.Toyomoto, N.Shimazaki, R.Kaneko, A.Tanabe, I.Takebe, S.Kuroda, T.Kobayashi, S.Toji, K.Tamai, H.Yamamoto, and O.Koiwai (2001).
Terminal deoxynucleotidyltransferase is negatively regulated by direct interaction with proliferating cell nuclear antigen.
  Genes Cells, 6, 815-824.  
11266590 S.Matsumiya, Y.Ishino, and K.Morikawa (2001).
Crystal structure of an archaeal DNA sliding clamp: proliferating cell nuclear antigen from Pyrococcus furiosus.
  Protein Sci, 10, 17-23.
PDB code: 1ge8
11532029 Y.Ishino, T.Tsurimoto, S.Ishino, and I.K.Cann (2001).
Functional interactions of an archaeal sliding clamp with mammalian clamp loader and DNA polymerase delta.
  Genes Cells, 6, 699-706.  
10982878 A.F.Neuwald, and A.Poleksic (2000).
PSI-BLAST searches using hidden markov models of structural repeats: prediction of an unusual sliding DNA clamp and of beta-propellers in UV-damaged DNA-binding protein.
  Nucleic Acids Res, 28, 3570-3580.  
10858286 D.I.Zheleva, N.Z.Zhelev, P.M.Fischer, S.V.Duff, E.Warbrick, D.G.Blake, and D.P.Lane (2000).
A quantitative study of the in vitro binding of the C-terminal domain of p21 to PCNA: affinity, stoichiometry, and thermodynamics.
  Biochemistry, 39, 7388-7397.  
  10747065 D.S.Henderson, U.K.Wiegand, D.G.Norman, and D.M.Glover (2000).
Mutual correction of faulty PCNA subunits in temperature-sensitive lethal mus209 mutants of Drosophila melanogaster.
  Genetics, 154, 1721-1733.  
10967424 G.P.Dotto (2000).
p21(WAF1/Cip1): more than a break to the cell cycle?
  Biochim Biophys Acta, 1471, M43-M56.  
10882068 H.J.Zuccola, D.J.Filman, D.M.Coen, and J.M.Hogle (2000).
The crystal structure of an unusual processivity factor, herpes simplex virus UL42, bound to the C terminus of its cognate polymerase.
  Mol Cell, 5, 267-278.
PDB code: 1dml
10769021 H.Leonhardt, H.P.Rahn, P.Weinzierl, A.Sporbert, T.Cremer, D.Zink, and M.C.Cardoso (2000).
Dynamics of DNA replication factories in living cells.
  J Cell Biol, 149, 271-280.  
10648606 J.G.Moggs, P.Grandi, J.P.Quivy, Z.O.Jónsson, U.Hübscher, P.B.Becker, and G.Almouzni (2000).
A CAF-1-PCNA-mediated chromatin assembly pathway triggered by sensing DNA damage.
  Mol Cell Biol, 20, 1206-1218.  
10712935 J.L.Keck, and J.M.Berger (2000).
DNA replication at high resolution.
  Chem Biol, 7, R63-R71.  
11076534 J.N.Adkins, and K.J.Lumb (2000).
Stoichiometry of cyclin A-cyclin-dependent kinase 2 inhibition by p21Cip1/Waf1.
  Biochemistry, 39, 13925-13930.  
10660290 M.M.Hingorani, and M.O'Donnell (2000).
Sliding clamps: a (tail)ored fit.
  Curr Biol, 10, R25-R29.  
10753973 M.T.Scott, N.Morrice, and K.L.Ball (2000).
Reversible phosphorylation at the C-terminal regulatory domain of p21(Waf1/Cip1) modulates proliferating cell nuclear antigen binding.
  J Biol Chem, 275, 11529-11537.  
10828065 M.Vairapandi, N.Azam, A.G.Balliet, B.Hoffman, and D.A.Liebermann (2000).
Characterization of MyD118, Gadd45, and proliferating cell nuclear antigen (PCNA) interacting domains. PCNA impedes MyD118 AND Gadd45-mediated negative growth control.
  J Biol Chem, 275, 16810-16819.  
10698951 N.Reynolds, E.Warbrick, P.A.Fantes, and S.A.MacNeill (2000).
Essential interaction between the fission yeast DNA polymerase delta subunit Cdc27 and Pcn1 (PCNA) mediated through a C-terminal p21(Cip1)-like PCNA binding motif.
  EMBO J, 19, 1108-1118.  
10625694 N.Yao, J.Hurwitz, and M.O'Donnell (2000).
Dynamics of beta and proliferating cell nuclear antigen sliding clamps in traversing DNA secondary structure.
  J Biol Chem, 275, 1421-1432.  
  10712515 S.Le, R.Sternglanz, and C.W.Greider (2000).
Identification of two RNA-binding proteins associated with human telomerase RNA.
  Mol Biol Cell, 11, 999.  
12760061 T.Caspari, C.Davies, and A.M.Carr (2000).
Analysis of the fission yeast checkpoint Rad proteins.
  Cold Spring Harb Symp Quant Biol, 65, 451-456.  
10899134 X.V.Gomes, and P.M.Burgers (2000).
Two modes of FEN1 binding to PCNA regulated by DNA.
  EMBO J, 19, 3811-3821.  
11121020 Y.Shiomi, J.Usukura, Y.Masamura, K.Takeyasu, Y.Nakayama, C.Obuse, H.Yoshikawa, and T.Tsurimoto (2000).
ATP-dependent structural change of the eukaryotic clamp-loader protein, replication factor C.
  Proc Natl Acad Sci U S A, 97, 14127-14132.  
10702304 Z.Kelman, and J.Hurwitz (2000).
A unique organization of the protein subunits of the DNA polymerase clamp loader in the archaeon Methanobacterium thermoautotrophicum deltaH.
  J Biol Chem, 275, 7327-7336.  
9989506 A.Yuzhakov, Z.Kelman, and M.O'Donnell (1999).
Trading places on DNA--a three-point switch underlies primer handoff from primase to the replicative DNA polymerase.
  Cell, 96, 153-163.  
10391931 D.J.Mozzherin, C.K.Tan, K.M.Downey, and P.A.Fisher (1999).
Architecture of the active DNA polymerase delta.proliferating cell nuclear antigen.template-primer complex.
  J Biol Chem, 274, 19862-19867.  
10420154 F.H.Sarkar, Y.Li, W.A.Sakr, D.J.Grignon, S.S.Madan, D.P.Wood, and V.Adsay (1999).
Relationship of p21(WAF1) expression with disease-free survival and biochemical recurrence in prostate adenocarcinomas (PCa).
  Prostate, 40, 256-260.  
  10373560 F.Liu, C.Rothblum-Oviatt, C.E.Ryan, and H.Piwnica-Worms (1999).
Overproduction of human Myt1 kinase induces a G2 cell cycle delay by interfering with the intracellular trafficking of Cdc2-cyclin B1 complexes.
  Mol Cell Biol, 19, 5113-5123.  
10051561 G.Zhang, E.Gibbs, Z.Kelman, M.O'Donnell, and J.Hurwitz (1999).
Studies on the interactions between human replication factor C and human proliferating cell nuclear antigen.
  Proc Natl Acad Sci U S A, 96, 1869-1874.  
  10542158 I.K.Cann, S.Ishino, I.Hayashi, K.Komori, H.Toh, K.Morikawa, and Y.Ishino (1999).
Functional interactions of a homolog of proliferating cell nuclear antigen with DNA polymerases in Archaea.
  J Bacteriol, 181, 6591-6599.  
  10430556 I.K.Cann, and Y.Ishino (1999).
Archaeal DNA replication: identifying the pieces to solve a puzzle.
  Genetics, 152, 1249-1267.  
9927437 J.Turner, M.M.Hingorani, Z.Kelman, and M.O'Donnell (1999).
The internal workings of a DNA polymerase clamp-loading machine.
  EMBO J, 18, 771-783.  
  9847307 K.Weisshart, C.S.Chow, and D.M.Coen (1999).
Herpes simplex virus processivity factor UL42 imparts increased DNA-binding specificity to the viral DNA polymerase and decreased dissociation from primer-template without reducing the elongation rate.
  J Virol, 73, 55-66.  
10535929 M.D.Sutton, T.Opperman, and G.C.Walker (1999).
The Escherichia coli SOS mutagenesis proteins UmuD and UmuD' interact physically with the replicative DNA polymerase.
  Proc Natl Acad Sci U S A, 96, 12373-12378.  
10408173 M.Miura (1999).
Detection of chromatin-bound PCNA in mammalian cells and its use to study DNA excision repair.
  J Radiat Res (Tokyo), 40, 1.  
10585411 N.J.Richter, G.W.Rogers, J.O.Hensold, and W.C.Merrick (1999).
Further biochemical and kinetic characterization of human eukaryotic initiation factor 4H.
  J Biol Chem, 274, 35415-35424.  
  10581271 N.S.Amin, K.M.Tuffo, and C.Holm (1999).
Dominant mutations in three different subunits of replication factor C suppress replication defects in yeast PCNA mutants.
  Genetics, 153, 1617-1628.  
10480866 P.Zhang, J.Y.Mo, A.Perez, A.Leon, L.Liu, N.Mazloum, H.Xu, and M.Y.Lee (1999).
Direct interaction of proliferating cell nuclear antigen with the p125 catalytic subunit of mammalian DNA polymerase delta.
  J Biol Chem, 274, 26647-26653.  
9933638 R.Gary, K.Kim, H.L.Cornelius, M.S.Park, and Y.Matsumoto (1999).
Proliferating cell nuclear antigen facilitates excision in long-patch base excision repair.
  J Biol Chem, 274, 4354-4363.  
10047578 S.S.Parikh, C.D.Mol, D.J.Hosfield, and J.A.Tainer (1999).
Envisioning the molecular choreography of DNA base excision repair.
  Curr Opin Struct Biol, 9, 37-47.  
10559261 Y.Matsumoto, K.Kim, J.Hurwitz, R.Gary, D.S.Levin, A.E.Tomkinson, and M.S.Park (1999).
Reconstitution of proliferating cell nuclear antigen-dependent repair of apurinic/apyrimidinic sites with purified human proteins.
  J Biol Chem, 274, 33703-33708.  
10535734 Y.Shamoo, and T.A.Steitz (1999).
Building a replisome from interacting pieces: sliding clamp complexed to a peptide from DNA polymerase and a polymerase editing complex.
  Cell, 99, 155-166.
PDB codes: 1b77 1b8h 1clq 1qe4
10449724 Z.Kelman, S.Zuo, M.P.Arroyo, T.S.Wang, and J.Hurwitz (1999).
The C-terminal region of Schizosaccaromyces pombe proliferating cell nuclear antigen is essential for DNA polymerase activity.
  Proc Natl Acad Sci U S A, 96, 9515-9520.  
9649448 A.Montecucco, R.Rossi, D.S.Levin, R.Gary, M.S.Park, T.A.Motycka, G.Ciarrocchi, A.Villa, G.Biamonti, and A.E.Tomkinson (1998).
DNA ligase I is recruited to sites of DNA replication by an interaction with proliferating cell nuclear antigen: identification of a common targeting mechanism for the assembly of replication factories.
  EMBO J, 17, 3786-3795.  
9778254 D.J.Hosfield, C.D.Mol, B.Shen, and J.A.Tainer (1998).
Structure of the DNA repair and replication endonuclease and exonuclease FEN-1: coupling DNA and PCNA binding to FEN-1 activity.
  Cell, 95, 135-146.
PDB code: 1b43
9631646 E.Warbrick (1998).
PCNA binding through a conserved motif.
  Bioessays, 20, 195-199.  
9677405 K.J.Gerik, X.Li, A.Pautz, and P.M.Burgers (1998).
Characterization of the two small subunits of Saccharomyces cerevisiae DNA polymerase delta.
  J Biol Chem, 273, 19747-19755.  
9592143 K.Piard, G.Baldacci, and I.Tratner (1998).
Single point mutations located outside the inter-monomer domains abolish trimerization of Schizosaccharomyces pombe PCNA.
  Nucleic Acids Res, 26, 2598-2605.  
9422722 P.Zhang, Y.Sun, H.Hsu, L.Zhang, Y.Zhang, and M.Y.Lee (1998).
The interdomain connector loop of human PCNA is involved in a direct interaction with human polymerase delta.
  J Biol Chem, 273, 713-719.  
  9632802 S.Waga, and B.Stillman (1998).
Cyclin-dependent kinase inhibitor p21 modulates the DNA primer-template recognition complex.
  Mol Cell Biol, 18, 4177-4187.  
9759502 S.Waga, and B.Stillman (1998).
The DNA replication fork in eukaryotic cells.
  Annu Rev Biochem, 67, 721-751.  
9734782 T.Oku, S.Ikeda, H.Sasaki, K.Fukuda, H.Morioka, E.Ohtsuka, H.Yoshikawa, and T.Tsurimoto (1998).
Functional sites of human PCNA which interact with p21 (Cip1/Waf1), DNA polymerase delta and replication factor C.
  Genes Cells, 3, 357-369.  
9521689 W.H.Beckwith, Q.Sun, R.Bosso, K.J.Gerik, P.M.Burgers, and M.A.McAlear (1998).
Destabilized PCNA trimers suppress defective Rfc1 proteins in vivo and in vitro.
  Biochemistry, 37, 3711-3722.  
9697409 Z.Kelman, and J.Hurwitz (1998).
Protein-PCNA interactions: a DNA-scanning mechanism?
  Trends Biochem Sci, 23, 236-238.  
9545252 Z.O.Jónsson, R.Hindges, and U.Hübscher (1998).
Regulation of DNA replication and repair proteins through interaction with the front side of proliferating cell nuclear antigen.
  EMBO J, 17, 2412-2425.  
9371766 D.S.Levin, W.Bai, N.Yao, M.O'Donnell, and A.E.Tomkinson (1997).
An interaction between DNA ligase I and proliferating cell nuclear antigen: implications for Okazaki fragment synthesis and joining.
  Proc Natl Acad Sci U S A, 94, 12863-12868.  
8999948 E.Gibbs, Z.Kelman, J.M.Gulbis, M.O'Donnell, J.Kuriyan, P.M.Burgers, and J.Hurwitz (1997).
The influence of the proliferating cell nuclear antigen-interacting domain of p21(CIP1) on DNA synthesis catalyzed by the human and Saccharomyces cerevisiae polymerase delta holoenzymes.
  J Biol Chem, 272, 2373-2381.  
9396813 G.Loor, S.J.Zhang, P.Zhang, N.L.Toomey, and M.Y.Lee (1997).
Identification of DNA replication and cell cycle proteins that interact with PCNA.
  Nucleic Acids Res, 25, 5041-5046.  
  9343398 J.C.Eissenberg, R.Ayyagari, X.V.Gomes, and P.M.Burgers (1997).
Mutations in yeast proliferating cell nuclear antigen define distinct sites for interaction with DNA polymerase delta and DNA polymerase epsilon.
  Mol Cell Biol, 17, 6367-6378.  
  9284048 J.O.Funk, S.Waga, J.B.Harry, E.Espling, B.Stillman, and D.A.Galloway (1997).
Inhibition of CDK activity and PCNA-dependent DNA replication by p21 is blocked by interaction with the HPV-16 E7 oncoprotein.
  Genes Dev, 11, 2090-2100.  
9302295 L.S.Chuang, H.I.Ian, T.W.Koh, H.H.Ng, G.Xu, and B.F.Li (1997).
Human DNA-(cytosine-5) methyltransferase-PCNA complex as a target for p21WAF1.
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9192631 M.Ouhammouch, M.H.Sayre, J.T.Kadonaga, and E.P.Geiduschek (1997).
Activation of RNA polymerase II by topologically linked DNA-tracking proteins.
  Proc Natl Acad Sci U S A, 94, 6718-6723.  
9341154 O.Yurieva, M.Skangalis, J.Kuriyan, and M.O'Donnell (1997).
Thermus thermophilis dnaX homolog encoding gamma- and tau-like proteins of the chromosomal replicase.
  J Biol Chem, 272, 27131-27139.  
  9444478 P.A.Bullock (1997).
The initiation of simian virus 40 DNA replication in vitro.
  Crit Rev Biochem Mol Biol, 32, 503-568.  
9305916 R.Gary, D.L.Ludwig, H.L.Cornelius, M.A.MacInnes, and M.S.Park (1997).
The DNA repair endonuclease XPG binds to proliferating cell nuclear antigen (PCNA) and shares sequence elements with the PCNA-binding regions of FEN-1 and cyclin-dependent kinase inhibitor p21.
  J Biol Chem, 272, 24522-24529.  
  9191022 R.Hindges, and U.Hübscher (1997).
DNA polymerase delta, an essential enzyme for DNA transactions.
  Biol Chem, 378, 345-362.  
9394619 Z.O.Jónsson, and U.Hübscher (1997).
Proliferating cell nuclear antigen: more than a clamp for DNA polymerases.
  Bioessays, 19, 967-975.  
The most recent references are shown first. Citation data come partly from CiteXplore and partly from an automated harvesting procedure. Note that this is likely to be only a partial list as not all journals are covered by either method. However, we are continually building up the citation data so more and more references will be included with time. Where a reference describes a PDB structure, the PDB codes are shown on the right.

 

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