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Ribosome PDB id
1p87
Jmol
Contents
Protein chains
236 a.a.* *
206 a.a.* *
204 a.a.* *
148 a.a.* *
95 a.a.* *
137 a.a.* *
127 a.a.* *
99 a.a.* *
96 a.a.* *
101 a.a.* *
97 a.a.* *
115 a.a.* *
32 a.a.* *
86 a.a.* *
78 a.a.* *
79 a.a.* *
51 a.a.* *
65 a.a.* *
83 a.a.* *
DNA/RNA
* Residue conservation analysis
* C-alpha coords only
PDB id:
1p87
Name: Ribosome
Title: Real space refined coordinates of the 30s subunit fitted into the low resolution cryo-em map of the initiation-like state of e. Coli 70s ribosome
Structure: 16s ribosomal RNA. Chain: a. 30s ribosomal protein s2. Chain: b. 30s ribosomal protein s3. Chain: c. 30s ribosomal protein s4. Chain: d. 30s ribosomal protein s5.
Source: Escherichia coli. Organism_taxid: 562. Strain: mre 600. Strain: mre 600
Biol. unit: 20mer (from PQS)
Authors: H.Gao,J.Sengupta,M.Valle,A Korostelev,N.Eswar,S.M.Stagg, P.Van Roey,R.K.Agrawal,S.T.Harvey,A.Sali,M.S.Chapman,J.Fran
Key ref:
H.Gao et al. (2003). Study of the structural dynamics of the E coli 70S ribosome using real-space refinement. Cell, 113, 789-801. PubMed id: 12809609 DOI: 10.1016/S0092-8674(03)00427-6
Date:
06-May-03     Release date:   17-Jun-03    
 Headers
 References

Protein chain
Pfam   ArchSchema ?
P0A7V0  (RS2_ECOLI) -  30S ribosomal protein S2
Seq:
Struc:
241 a.a.
236 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7V3  (RS3_ECOLI) -  30S ribosomal protein S3
Seq:
Struc:
233 a.a.
206 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7V8  (RS4_ECOLI) -  30S ribosomal protein S4
Seq:
Struc:
206 a.a.
204 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7W1  (RS5_ECOLI) -  30S ribosomal protein S5
Seq:
Struc:
167 a.a.
148 a.a.
Protein chain
Pfam   ArchSchema ?
P02358  (RS6_ECOLI) -  30S ribosomal protein S6
Seq:
Struc:
135 a.a.
95 a.a.
Protein chain
Pfam   ArchSchema ?
P02359  (RS7_ECOLI) -  30S ribosomal protein S7
Seq:
Struc:
179 a.a.
137 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7W7  (RS8_ECOLI) -  30S ribosomal protein S8
Seq:
Struc:
130 a.a.
127 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7X3  (RS9_ECOLI) -  30S ribosomal protein S9
Seq:
Struc:
130 a.a.
99 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7R5  (RS10_ECOLI) -  30S ribosomal protein S10
Seq:
Struc:
103 a.a.
96 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7R9  (RS11_ECOLI) -  30S ribosomal protein S11
Seq:
Struc:
129 a.a.
101 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7S3  (RS12_ECOLI) -  30S ribosomal protein S12
Seq:
Struc:
124 a.a.
97 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7S9  (RS13_ECOLI) -  30S ribosomal protein S13
Seq:
Struc:
118 a.a.
115 a.a.
Protein chain
Pfam   ArchSchema ?
P0AG59  (RS14_ECOLI) -  30S ribosomal protein S14
Seq:
Struc:
101 a.a.
32 a.a.
Protein chain
Pfam   ArchSchema ?
P0ADZ4  (RS15_ECOLI) -  30S ribosomal protein S15
Seq:
Struc:
89 a.a.
86 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7T3  (RS16_ECOLI) -  30S ribosomal protein S16
Seq:
Struc:
82 a.a.
78 a.a.
Protein chain
Pfam   ArchSchema ?
P0AG63  (RS17_ECOLI) -  30S ribosomal protein S17
Seq:
Struc:
84 a.a.
79 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7T7  (RS18_ECOLI) -  30S ribosomal protein S18
Seq:
Struc:
75 a.a.
51 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7U3  (RS19_ECOLI) -  30S ribosomal protein S19
Seq:
Struc:
92 a.a.
65 a.a.
Protein chain
Pfam   ArchSchema ?
P0A7U7  (RS20_ECOLI) -  30S ribosomal protein S20
Seq:
Struc:
87 a.a.
83 a.a.
Key:    PfamA domain  Secondary structure

 Gene Ontology (GO) functional annotation 
  GO annot!
  Cellular component     intracellular   6 terms 
  Biological process     response to antibiotic   12 terms 
  Biochemical function     structural constituent of ribosome     15 terms  

 

 
    reference    
 
 
DOI no: 10.1016/S0092-8674(03)00427-6 Cell 113:789-801 (2003)
PubMed id: 12809609  
 
 
Study of the structural dynamics of the E coli 70S ribosome using real-space refinement.
H.Gao, J.Sengupta, M.Valle, A.Korostelev, N.Eswar, S.M.Stagg, P.Van Roey, R.K.Agrawal, S.C.Harvey, A.Sali, M.S.Chapman, J.Frank.
 
  ABSTRACT  
 
Cryo-EM density maps showing the 70S ribosome of E. coli in two different functional states related by a ratchet-like motion were analyzed using real-space refinement. Comparison of the two resulting atomic models shows that the ribosome changes from a compact structure to a looser one, coupled with the rearrangement of many of the proteins. Furthermore, in contrast to the unchanged inter-subunit bridges formed wholly by RNA, the bridges involving proteins undergo large conformational changes following the ratchet-like motion, suggesting an important role of ribosomal proteins in facilitating the dynamics of translation.
 
  Selected figure(s)  
 
Figure 6.
Figure 6. Stereo Views of the Protein Conformational Changes between the Initiation-Like and the EF-G·GTP Bound StatesThe proteins in the initiation-like and the EF-G·GTP bound states are colored in red and green, respectively.(A) mRNA entrance channel.(B) mRNA exit channel.(C) Polypeptide exit tunnel.(D) 70S proteins.
Figure 7.
Figure 7. Diagrammatic Presentation of Interaction between the 30S Subunit and Proteins L2, L5, and L14The interacting regions of L2, L5, and L14 on the 30S subunit are marked with stars. The geometrically rotational center region of the 30S subunit is colored in cyan. Landmarks: bk, beak; sp, spur.
 
  The above figures are reprinted by permission from Cell Press: Cell (2003, 113, 789-801) copyright 2003.  
  Figures were selected by the author.  

Literature references that cite this PDB file's key reference

  PubMed id Reference
21399643 D.N.Ermolenko, and H.F.Noller (2011).
mRNA translocation occurs during the second step of ribosomal intersubunit rotation.
  Nat Struct Mol Biol, 18, 457-462.  
21383139 J.Fu, J.B.Munro, S.C.Blanchard, and J.Frank (2011).
Cryoelectron microscopy structures of the ribosome complex in intermediate states during tRNA translocation.
  Proc Natl Acad Sci U S A, 108, 4817-4821.  
21138965 Q.Sun, A.Vila-Sanjurjo, and M.O'Connor (2011).
Mutations in the intersubunit bridge regions of 16S rRNA affect decoding and subunit-subunit interactions on the 70S ribosome.
  Nucleic Acids Res, 39, 3321-3330.  
21463690 R.J.Hall, E.Nogales, and R.M.Glaeser (2011).
Accurate modeling of single-particle cryo-EM images quantitates the benefits expected from using Zernike phase contrast.
  J Struct Biol, 174, 468-475.  
20192783 C.E.Aitken, A.Petrov, and J.D.Puglisi (2010).
Single ribosome dynamics and the mechanism of translation.
  Annu Rev Biophys, 39, 491-513.  
20507916 I.Besseová, K.Réblová, N.B.Leontis, and J.Sponer (2010).
Molecular dynamics simulations suggest that RNA three-way junctions can act as flexible RNA structural elements in the ribosome.
  Nucleic Acids Res, 38, 6247-6264.  
20940705 J.Fu, Y.Hashem, I.Wower, J.Lei, H.Y.Liao, C.Zwieb, J.Wower, and J.Frank (2010).
Visualizing the transfer-messenger RNA as the ribosome resumes translation.
  EMBO J, 29, 3819-3825.
PDB code: 3iz4
20109465 J.Zhu, L.Cheng, Q.Fang, Z.H.Zhou, and B.Honig (2010).
Building and refining protein models within cryo-electron microscopy density maps based on homology modeling and multiscale structure refinement.
  J Mol Biol, 397, 835-851.  
19952067 K.Réblová, F.Rázga, W.Li, H.Gao, J.Frank, and J.Sponer (2010).
Dynamics of the base of ribosomal A-site finger revealed by molecular dynamics simulations and Cryo-EM.
  Nucleic Acids Res, 38, 1325-1340.  
20056148 M.Rusu, and S.Birmanns (2010).
Evolutionary tabu search strategies for the simultaneous registration of multiple atomic structures in cryo-EM reconstructions.
  J Struct Biol, 170, 164-171.  
20085819 M.Shatsky, R.J.Hall, E.Nogales, J.Malik, and S.E.Brenner (2010).
Automated multi-model reconstruction from single-particle electron microscopy data.
  J Struct Biol, 170, 98.  
19914248 P.Khade, and S.Joseph (2010).
Functional interactions by transfer RNAs in the ribosome.
  FEBS Lett, 584, 420-426.  
20617452 X.Xu, and D.Cao (2010).
Thermodynamic stability of polypeptides folding within modeled ribosomal exit tunnel: a density functional study.
  Eur Phys J E Soft Matter, 32, 307-318.  
19822758 A.Korostelev, M.Laurberg, and H.F.Noller (2009).
Multistart simulated annealing refinement of the crystal structure of the 70S ribosome.
  Proc Natl Acad Sci U S A, 106, 18195-18200.  
19171966 A.M.Karmali, T.L.Blundell, and N.Furnham (2009).
Model-building strategies for low-resolution X-ray crystallographic data.
  Acta Crystallogr D Biol Crystallogr, 65, 121-127.  
19213046 D.M.Hamburg, M.J.Suh, and P.A.Limbach (2009).
Limited proteolysis analysis of the ribosome is affected by subunit association.
  Biopolymers, 91, 410-422.  
18621088 D.P.Giedroc, and P.V.Cornish (2009).
Frameshifting RNA pseudoknots: structure and mechanism.
  Virus Res, 139, 193-208.
PDB codes: 2rp0 2rp1
19469554 G.Y.Soung, J.L.Miller, H.Koc, and E.C.Koc (2009).
Comprehensive analysis of phosphorylated proteins of Escherichia coli ribosomes.
  J Proteome Res, 8, 3390-3402.  
19571367 I.Tinoco, and J.D.Wen (2009).
Simulation and analysis of single-ribosome translation.
  Phys Biol, 6, 25006.  
20025794 J.Frank (2009).
Single-particle reconstruction of biological macromolecules in electron microscopy--30 years.
  Q Rev Biophys, 42, 139-158.  
19838170 M.Beck, J.A.Malmström, V.Lange, A.Schmidt, E.W.Deutsch, and R.Aebersold (2009).
Visual proteomics of the human pathogen Leptospira interrogans.
  Nat Methods, 6, 817-823.  
19603183 M.O'Connor (2009).
Helix 69 in 23S rRNA modulates decoding by wild type and suppressor tRNAs.
  Mol Genet Genomics, 282, 371-380.  
19564688 N.Volkmann (2009).
Confidence intervals for fitting of atomic models into low-resolution densities.
  Acta Crystallogr D Biol Crystallogr, 65, 679-689.  
19190181 P.V.Cornish, D.N.Ermolenko, D.W.Staple, L.Hoang, R.P.Hickerson, H.F.Noller, and T.Ha (2009).
Following movement of the L1 stalk between three functional states in single ribosomes.
  Proc Natl Acad Sci U S A, 106, 2571-2576.  
  19173642 S.Shoji, S.E.Walker, and K.Fredrick (2009).
Ribosomal translocation: one step closer to the molecular mechanism.
  ACS Chem Biol, 4, 93.  
19838167 T.M.Schmeing, and V.Ramakrishnan (2009).
What recent ribosome structures have revealed about the mechanism of translation.
  Nature, 461, 1234-1242.  
19486296 T.Tenson, and V.Hauryliuk (2009).
Does the ribosome have initiation and elongation modes of translation?
  Mol Microbiol, 72, 1310-1315.  
20025795 X.Agirrezabala, and J.Frank (2009).
Elongation in translation as a dynamic interaction among the ribosome, tRNA, and elongation factors EF-G and EF-Tu.
  Q Rev Biophys, 42, 159-200.  
19545171 X.Shi, K.Chiu, S.Ghosh, and S.Joseph (2009).
Bases in 16S rRNA important for subunit association, tRNA binding, and translocation.
  Biochemistry, 48, 6772-6782.  
18848900 A.Korostelev, D.N.Ermolenko, and H.F.Noller (2008).
Structural dynamics of the ribosome.
  Curr Opin Chem Biol, 12, 674-683.  
18824477 A.N.Petrov, A.Meskauskas, S.C.Roshwalb, and J.D.Dinman (2008).
Yeast ribosomal protein L10 helps coordinate tRNA movement through the large subunit.
  Nucleic Acids Res, 36, 6187-6198.  
17993504 C.C.Jolley, S.A.Wells, P.Fromme, and M.F.Thorpe (2008).
Fitting low-resolution cryo-EM maps of proteins using constrained geometric simulations.
  Biophys J, 94, 1613-1621.  
18637734 K.Bakowska-Zywicka, A.M.Kietrys, and T.Twardowski (2008).
Antisense oligonucleotides targeting universally conserved 26S rRNA domains of plant ribosomes at different steps of polypeptide elongation.
  Oligonucleotides, 18, 175-186.  
18462672 L.G.Trabuco, E.Villa, K.Mitra, J.Frank, and K.Schulten (2008).
Flexible fitting of atomic structures into electron microscopy maps using molecular dynamics.
  Structure, 16, 673-683.  
18849406 M.Orzechowski, and F.Tama (2008).
Flexible fitting of high-resolution x-ray structures into cryoelectron microscopy maps using biased molecular dynamics simulations.
  Biophys J, 95, 5692-5705.  
18400176 P.Chandramouli, M.Topf, J.F.Ménétret, N.Eswar, J.J.Cannone, R.R.Gutell, A.Sali, and C.W.Akey (2008).
Structure of the mammalian 80S ribosome at 8.7 A resolution.
  Structure, 16, 535-548.
PDB codes: 2zkq 2zkr
18538656 P.V.Cornish, D.N.Ermolenko, H.F.Noller, and T.Ha (2008).
Spontaneous intersubunit rotation in single ribosomes.
  Mol Cell, 30, 578-588.  
18572416 R.K.Tan, B.Devkota, and S.C.Harvey (2008).
YUP.SCX: coaxing atomic models into medium resolution electron density maps.
  J Struct Biol, 163, 163-174.  
18252772 T.Miyoshi, and T.Uchiumi (2008).
Functional interaction between bases C1049 in domain II and G2751 in domain VI of 23S rRNA in Escherichia coli ribosomes.
  Nucleic Acids Res, 36, 1783-1791.  
19020518 W.Li, X.Agirrezabala, J.Lei, L.Bouakaz, J.L.Brunelle, R.F.Ortiz-Meoz, R.Green, S.Sanyal, M.Ehrenberg, and J.Frank (2008).
Recognition of aminoacyl-tRNA: a common molecular mechanism revealed by cryo-EM.
  EMBO J, 27, 3322-3331.
PDB codes: 3ep2 3eq3 3eq4
17244535 A.Fabbretti, C.L.Pon, S.P.Hennelly, W.E.Hill, J.S.Lodmell, and C.O.Gualerzi (2007).
The real-time path of translation factor IF3 onto and off the ribosome.
  Mol Cell, 25, 285-296.  
17897673 A.Korostelev, and H.F.Noller (2007).
Analysis of structural dynamics in the ribosome by TLS crystallographic refinement.
  J Mol Biol, 373, 1058-1070.  
17764954 A.Korostelev, and H.F.Noller (2007).
The ribosome in focus: new structures bring new insights.
  Trends Biochem Sci, 32, 434-441.  
17940016 A.Korostelev, S.Trakhanov, H.Asahara, M.Laurberg, L.Lancaster, and H.F.Noller (2007).
Interactions and dynamics of the Shine Dalgarno helix in the 70S ribosome.
  Proc Natl Acad Sci U S A, 104, 16840-16843.
PDB codes: 1vsp 2qnh
17591769 A.Yassin, and A.S.Mankin (2007).
Potential new antibiotic sites in the ribosome revealed by deleterious mutations in RNA of the large ribosomal subunit.
  J Biol Chem, 282, 24329-24342.  
17585939 C.Sachse, J.Z.Chen, P.D.Coureux, M.E.Stroupe, M.Fändrich, and N.Grigorieff (2007).
High-resolution electron microscopy of helical specimens: a fresh look at tobacco mosaic virus.
  J Mol Biol, 371, 812-835.
PDB code: 2om3
17446867 D.J.Taylor, J.Nilsson, A.R.Merrill, G.R.Andersen, P.Nissen, and J.Frank (2007).
Structures of modified eEF2 80S ribosome complexes reveal the role of GTP hydrolysis in translocation.
  EMBO J, 26, 2421-2431.
PDB codes: 2p8w 2p8x 2p8y 2p8z
17515906 D.N.Ermolenko, P.C.Spiegel, Z.K.Majumdar, R.P.Hickerson, R.M.Clegg, and H.F.Noller (2007).
The antibiotic viomycin traps the ribosome in an intermediate state of translocation.
  Nat Struct Mol Biol, 14, 493-497.  
17652323 E.C.Kouvela, G.V.Gerbanas, M.A.Xaplanteri, A.D.Petropoulos, G.P.Dinos, and D.L.Kalpaxis (2007).
Changes in the conformation of 5S rRNA cause alterations in principal functions of the ribosomal nanomachine.
  Nucleic Acids Res, 35, 5108-5119.  
17296314 E.Shacham, B.Sheehan, and N.Volkmann (2007).
Density-based score for selecting near-native atomic models of unknown structures.
  J Struct Biol, 158, 188-195.  
17272297 G.Zoldák, L.Redecke, D.I.Svergun, P.V.Konarev, C.S.Voertler, H.Dobbek, E.Sedlák, and M.Sprinzl (2007).
Release factors 2 from Escherichia coli and Thermus thermophilus: structural, spectroscopic and microcalorimetric studies.
  Nucleic Acids Res, 35, 1343-1353.
PDB code: 2ihr
17540173 H.Gao, Z.Zhou, U.Rawat, C.Huang, L.Bouakaz, C.Wang, Z.Cheng, Y.Liu, A.Zavialov, R.Gursky, S.Sanyal, M.Ehrenberg, J.Frank, and H.Song (2007).
RF3 induces ribosomal conformational changes responsible for dissociation of class I release factors.
  Cell, 129, 929-941.
PDB codes: 2h5e 2o0f
17169991 H.R.Jonker, S.Ilin, S.K.Grimm, J.Wöhnert, and H.Schwalbe (2007).
L11 domain rearrangement upon binding to RNA and thiostrepton studied by NMR spectroscopy.
  Nucleic Acids Res, 35, 441-454.
PDB codes: 2jq7 2nyo
17521915 M.J.Suh, S.Pourshahian, and P.A.Limbach (2007).
Developing limited proteolysis and mass spectrometry for the characterization of ribosome topography.
  J Am Soc Mass Spectrom, 18, 1304-1317.  
17828421 M.O'Connor (2007).
Selection for intragenic suppressors of lethal 23S rRNA mutations in Escherichia coli identifies residues important for ribosome assembly and function.
  Mol Genet Genomics, 278, 677-687.  
17564727 M.O'connor (2007).
Interaction between the ribosomal subunits: 16S rRNA suppressors of the lethal DeltaA1916 mutation in the 23S rRNA of Escherichia coli.
  Mol Genet Genomics, 278, 307-315.  
17996252 N.Gao, A.V.Zavialov, M.Ehrenberg, and J.Frank (2007).
Specific interaction between EF-G and RRF and its implication for GTP-dependent ribosome splitting into subunits.
  J Mol Biol, 374, 1345-1358.
PDB code: 2rdo
18079724 R.A.Grassucci, D.J.Taylor, and J.Frank (2007).
Preparation of macromolecular complexes for cryo-electron microscopy.
  Nat Protoc, 2, 3239-3246.  
17660285 R.Leipuviene, and G.R.Björk (2007).
Alterations in the two globular domains or in the connecting alpha-helix of bacterial ribosomal protein L9 induces +1 frameshifts.
  J Bacteriol, 189, 7024-7031.  
17327221 T.R.Porras-Yakushi, J.P.Whitelegge, and S.Clarke (2007).
Yeast ribosomal/cytochrome c SET domain methyltransferase subfamily: identification of Rpl23ab methylation sites and recognition motifs.
  J Biol Chem, 282, 12368-12376.  
18158895 X.H.Liang, Q.Liu, and M.J.Fournier (2007).
rRNA modifications in an intersubunit bridge of the ribosome strongly affect both ribosome biogenesis and activity.
  Mol Cell, 28, 965-977.  
16962654 A.Korostelev, S.Trakhanov, M.Laurberg, and H.F.Noller (2006).
Crystal structure of a 70S ribosome-tRNA complex reveals functional interactions and rearrangements.
  Cell, 126, 1065-1077.
PDB codes: 1vsa 2ow8
16891309 A.Liiv, and M.O'Connor (2006).
Mutations in the intersubunit bridge regions of 23 S rRNA.
  J Biol Chem, 281, 29850-29862.  
16556933 A.Pulk, U.Maiväli, and J.Remme (2006).
Identification of nucleotides in E. coli 16S rRNA essential for ribosome subunit association.
  RNA, 12, 790-796.  
16809861 A.Seshadri, and U.Varshney (2006).
Mechanism of recycling of post-termination ribosomal complexes in eubacteria: a new role of initiation factor 3.
  J Biosci, 31, 281-289.  
16943448 F.Tama, G.Ren, C.L.Brooks, and A.K.Mitra (2006).
Model of the toxic complex of anthrax: responsive conformational changes in both the lethal factor and the protective antigen heptamer.
  Protein Sci, 15, 2190-2200.  
  16955948 H.M.Berman, S.K.Burley, W.Chiu, A.Sali, A.Adzhubei, P.E.Bourne, S.H.Bryant, R.L.Dunbrack, K.Fidelis, J.Frank, A.Godzik, K.Henrick, A.Joachimiak, B.Heymann, D.Jones, J.L.Markley, J.Moult, G.T.Montelione, C.Orengo, M.G.Rossmann, B.Rost, H.Saibil, T.Schwede, D.M.Standley, and J.D.Westbrook (2006).
Outcome of a workshop on archiving structural models of biological macromolecules.
  Structure, 14, 1211-1217.  
16698554 J.H.Han, N.Kerrison, C.Chothia, and S.A.Teichmann (2006).
Divergence of interdomain geometry in two-domain proteins.
  Structure, 14, 935-945.  
16713583 K.Mitra, C.Schaffitzel, F.Fabiola, M.S.Chapman, N.Ban, and J.Frank (2006).
Elongation arrest by SecM via a cascade of ribosomal RNA rearrangements.
  Mol Cell, 22, 533-543.
PDB codes: 2gy9 2gya 2gyb 2gyc
16689638 K.Mitra, and J.Frank (2006).
Ribosome dynamics: insights from atomic structure modeling into cryo-electron microscopy maps.
  Annu Rev Biophys Biomol Struct, 35, 299-317.  
16699167 L.Brandi, A.Fabbretti, M.Di Stefano, A.Lazzarini, M.Abbondi, and C.O.Gualerzi (2006).
Characterization of GE82832, a peptide inhibitor of translocation interacting with bacterial 30S ribosomal subunits.
  RNA, 12, 1262-1270.  
17069457 M.L.Baker, W.Jiang, W.J.Wedemeyer, F.J.Rixon, D.Baker, and W.Chiu (2006).
Ab initio modeling of the herpesvirus VP26 core domain assessed by CryoEM density.
  PLoS Comput Biol, 2, e146.  
16619019 N.Gao, and J.Frank (2006).
A library of RNA bridges.
  Nat Chem Biol, 2, 231-232.  
16582919 O.Rackham, K.Wang, and J.W.Chin (2006).
Functional epitopes at the ribosome subunit interface.
  Nat Chem Biol, 2, 254-258.  
16496021 P.Aloy, and R.B.Russell (2006).
Structural systems biology: modelling protein interactions.
  Nat Rev Mol Cell Biol, 7, 188-197.  
16950778 T.Komoda, N.S.Sato, S.S.Phelps, N.Namba, S.Joseph, and T.Suzuki (2006).
The A-site finger in 23 S rRNA acts as a functional attenuator for translocation.
  J Biol Chem, 281, 32303-32309.  
16428856 T.Matsuura, H.Tanaka, T.Matsumoto, and T.Kawai (2006).
Atomic force microscopic observation of Escherichia coli ribosomes in solution.
  Biosci Biotechnol Biochem, 70, 300-302.  
16459078 W.Chiu, M.L.Baker, and S.C.Almo (2006).
Structural biology of cellular machines.
  Trends Cell Biol, 16, 144-150.  
16053518 A.Liiv, D.Karitkina, U.Maiväli, and J.Remme (2005).
Analysis of the function of E. coli 23S rRNA helix-loop 69 by mutagenesis.
  BMC Mol Biol, 6, 18.  
15876367 A.R.Cukras, and R.Green (2005).
Multiple effects of S13 in modulating the strength of intersubunit interactions in the ribosome during translation.
  J Mol Biol, 349, 47-59.  
16204844 A.Szilágyi, V.Grimm, A.K.Arakaki, and J.Skolnick (2005).
Prediction of physical protein-protein interactions.
  Phys Biol, 2, S1-16.  
15616575 D.N.Wilson, F.Schluenzen, J.M.Harms, T.Yoshida, T.Ohkubo, R.Albrecht, J.Buerger, Y.Kobayashi, and P.Fucini (2005).
X-ray crystallography study on ribosome recycling: the mechanism of binding and action of RRF on the 50S ribosomal subunit.
  EMBO J, 24, 251-260.
PDB code: 1y69
15766545 F.Alber, M.F.Kim, and A.Sali (2005).
Structural characterization of assemblies from overall shape and subcomplex compositions.
  Structure, 13, 435-445.  
15872184 F.Bélanger, G.Théberge-Julien, P.R.Cunningham, and L.Brakier-Gingras (2005).
A functional relationship between helix 1 and the 900 tetraloop of 16S ribosomal RNA within the bacterial ribosome.
  RNA, 11, 906-913.  
15766540 F.Fabiola, and M.S.Chapman (2005).
Fitting of high-resolution structures into electron microscopy reconstruction images.
  Structure, 13, 389-400.  
15766541 H.Gao, and J.Frank (2005).
Molding atomic structures into intermediate-resolution cryo-EM density maps of ribosomal complexes using real-space refinement.
  Structure, 13, 401-406.  
  18074004 J.D.Dinman (2005).
5S rRNA: Structure and Function from Head to Toe.
  Int J Biomed Sci, 1, 2-7.  
16153172 J.Luirink, G.von Heijne, E.Houben, and J.W.de Gier (2005).
Biogenesis of inner membrane proteins in Escherichia coli.
  Annu Rev Microbiol, 59, 329-355.  
16292303 K.Mitra, C.Schaffitzel, T.Shaikh, F.Tama, S.Jenni, C.L.Brooks, N.Ban, and J.Frank (2005).
Structure of the E. coli protein-conducting channel bound to a translating ribosome.
  Nature, 438, 318-324.
PDB codes: 2akh 2aki
16249344 K.Y.Sanbonmatsu, S.Joseph, and C.S.Tung (2005).
Simulating movement of tRNA into the ribosome during decoding.
  Proc Natl Acad Sci U S A, 102, 15854-15859.  
15840820 M.Guillier, F.Allemand, M.Graffe, S.Raibaud, F.Dardel, M.Springer, and C.Chiaruttini (2005).
The N-terminal extension of Escherichia coli ribosomal protein L20 is important for ribosome assembly, but dispensable for translational feedback control.
  RNA, 11, 728-738.  
16120833 M.Sumita, J.P.Desaulniers, Y.C.Chang, H.M.Chui, L.Clos, and C.S.Chow (2005).
Effects of nucleotide substitution and modification on the stability and structure of helix 69 from 28S rRNA.
  RNA, 11, 1420-1429.  
16118050 M.Topf, and A.Sali (2005).
Combining electron microscopy and comparative protein structure modeling.
  Curr Opin Struct Biol, 15, 578-585.  
15949441 N.Gao, A.V.Zavialov, W.Li, J.Sengupta, M.Valle, R.P.Gursky, M.Ehrenberg, and J.Frank (2005).
Mechanism for the disassembly of the posttermination complex inferred from cryo-EM studies.
  Mol Cell, 18, 663-674.
PDB codes: 1zn0 1zn1
16337596 P.P.Datta, M.R.Sharma, L.Qi, J.Frank, and R.K.Agrawal (2005).
Interaction of the G' domain of elongation factor G and the C-terminal domain of ribosomal protein L7/L12 during translocation as revealed by cryo-EM.
  Mol Cell, 20, 723-731.
PDB code: 2bcw
16014631 P.V.Sergiev, D.V.Lesnyak, D.E.Burakovsky, S.V.Kiparisov, A.A.Leonov, A.A.Bogdanov, R.Brimacombe, and O.A.Dontsova (2005).
Alteration in location of a conserved GTPase-associated center of the ribosome induced by mutagenesis influences the structure of peptidyltransferase center and activity of elongation factor G.
  J Biol Chem, 280, 31882-31889.  
15811917 S.Ghosh, and S.Joseph (2005).
Nonbridging phosphate oxygens in 16S rRNA important for 30S subunit assembly and association with the 50S ribosomal subunit.
  RNA, 11, 657-667.  
15637160 S.R.Miller, S.Augustine, T.L.Olson, R.E.Blankenship, J.Selker, and A.M.Wood (2005).
Discovery of a free-living chlorophyll d-producing cyanobacterium with a hybrid proteobacterial/cyanobacterial small-subunit rRNA gene.
  Proc Natl Acad Sci U S A, 102, 850-855.  
15766537 W.Chiu, M.L.Baker, W.Jiang, M.Dougherty, and M.F.Schmid (2005).
Electron cryomicroscopy of biological machines at subnanometer resolution.
  Structure, 13, 363-372.  
14707145 A.J.Herr, N.M.Wills, C.C.Nelson, R.F.Gesteland, and J.F.Atkins (2004).
Factors that influence selection of coding resumption sites in translational bypassing: minimal conventional peptidyl-tRNA:mRNA pairing can suffice.
  J Biol Chem, 279, 11081-11087.  
15193312 A.S.Frangakis, and F.Förster (2004).
Computational exploration of structural information from cryo-electron tomograms.
  Curr Opin Struct Biol, 14, 325-331.  
15315759 C.M.Spahn, E.Jan, A.Mulder, R.A.Grassucci, P.Sarnow, and J.Frank (2004).
Cryo-EM visualization of a viral internal ribosome entry site bound to human ribosomes: the IRES functions as an RNA-based translation factor.
  Cell, 118, 465-475.  
14976550 C.M.Spahn, M.G.Gomez-Lorenzo, R.A.Grassucci, R.Jørgensen, G.R.Andersen, R.Beckmann, P.A.Penczek, J.P.Ballesta, and J.Frank (2004).
Domain movements of elongation factor eEF2 and the eukaryotic 80S ribosome facilitate tRNA translocation.
  EMBO J, 23, 1008-1019.
PDB codes: 1s1h 1s1i
15454463 C.S.Tung, and K.Y.Sanbonmatsu (2004).
Atomic model of the Thermus thermophilus 70S ribosome developed in silico.
  Biophys J, 87, 2714-2722.
PDB codes: 1twt 1twv
15465319 E.V.Orlova, and H.R.Saibil (2004).
Structure determination of macromolecular assemblies by single-particle analysis of cryo-electron micrographs.
  Curr Opin Struct Biol, 14, 584-590.  
14695511 H.Nakatogawa, and K.Ito (2004).
Intraribosomal regulation of expression and fate of proteins.
  Chembiochem, 5, 48-51.  
15274086 J.Trylska, R.Konecny, F.Tama, C.L.Brooks, and J.A.McCammon (2004).
Ribosome motions modulate electrostatic properties.
  Biopolymers, 74, 423-431.  
15525706 K.Semrad, R.Green, and R.Schroeder (2004).
RNA chaperone activity of large ribosomal subunit proteins from Escherichia coli.
  RNA, 10, 1855-1860.  
15509870 M.O'Connor, S.T.Gregory, and A.E.Dahlberg (2004).
Multiple defects in translation associated with altered ribosomal protein L4.
  Nucleic Acids Res, 32, 5750-5756.  
15193311 R.B.Russell, F.Alber, P.Aloy, F.P.Davis, D.Korkin, M.Pichaud, M.Topf, and A.Sali (2004).
A structural perspective on protein-protein interactions.
  Curr Opin Struct Biol, 14, 313-324.  
15068803 R.J.Gilbert, P.Fucini, S.Connell, S.D.Fuller, K.H.Nierhaus, C.V.Robinson, C.M.Dobson, and D.I.Stuart (2004).
Three-dimensional structures of translating ribosomes by Cryo-EM.
  Mol Cell, 14, 57-66.  
15313232 S.H.White, and G.von Heijne (2004).
The machinery of membrane protein assembly.
  Curr Opin Struct Biol, 14, 397-404.