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InterPro: IPR013500 DNA topoisomerase I, catalytic core, eukaryotic-type

Protein matchesHelp
UniProtKB
Matches:
314 proteins
AccessionHelp IPR013500 TopoI_cat_euk
SecondaryHelp IPR001631
TypeHelp Domain
SignaturesHelp
InterPro RelationshipsHelp
Found in IPR001631 DNA topoisomerase I, C-terminal
IPR013499 DNA topoisomerase I, C-terminal, eukaryotic-type
Contains IPR011010 DNA breaking-rejoining enzyme, catalytic core
IPR014711 DNA topoisomerase I, catalytic core, alpha-helical subdomain, eukaryotic-type
GO Term annotationHelp
Process GO:0006265 DNA topological change
Function GO:0003677 DNA binding
GO:0003918 DNA topoisomerase (ATP-hydrolyzing) activity
Component GO:0005694 chromosome
InterPro annotation
BioMart Logo Entry Details in BioMart
AbstractHelp

DNA topoisomerases regulate the number of topological links between two DNA strands (i.e. change the number of superhelical turns) by catalysing transient single- or double-strand breaks, crossing the strands through one another, then resealing the breaks. These enzymes have several functions: to remove DNA supercoils during transcription and DNA replication; for strand breakage during recombination; for chromosome condensation; and to disentangle intertwined DNA during mitosis [1, 2]. DNA topoisomerases are divided into two classes: type I enzymes (EC:5.99.1.2; topoisomerases I, III and V) break single-strand DNA, and type II enzymes (EC:5.99.1.3; topoisomerases II, IV and VI) break double-strand DNA [3].

Type I topoisomerases are ATP-independent enzymes (except for reverse gyrase), and can be subdivided according to their structure and reaction mechanisms: type IA (bacterial and archaeal topoisomerase I, topoisomerase III and reverse gyrase) and type IB (eukaryotic topoisomerase I and topoisomerase V). These enzymes are primarily responsible for relaxing positively and/or negatively supercoiled DNA, except for reverse gyrase, which can introduce positive supercoils into DNA.

This entry represents the catalytic core of eukaryotic and viral topoisomerase I (type IB) enzymes, which occurs near the C-terminal region of the protein.

Human topoisomerase I has been shown to be inhibited by camptothecin (CPT), a plant alkaloid with antitumour activity [4]. The crystal structures of human topoisomerase I comprising the core and carboxyl-terminal domains in covalent and noncovalent complexes with 22-base pair DNA duplexes reveal an enzyme that "clamps" around essentially B-form DNA. The core domain and the first eight residues of the carboxyl-terminal domain of the enzyme, including the active-site nucleophile tyrosine-723, share significant structural similarity with the bacteriophage family of DNA integrases. A binding mode for the anticancer drug camptothecin has been proposed on the basis of chemical and biochemical information combined with the three-dimensional structures of topoisomerase I-DNA complexes [5].

Vaccinia virus, a cytoplasmically-replicating poxvirus, encodes a type I DNA topoisomerase that is biochemically similar to eukaryotic-like DNA topoisomerases I, and which has been widely studied as a model topoisomerase. It is the smallest topoisomerase known and is unusual in that it is resistant to the potent chemotherapeutic agent camptothecin. The crystal structure of an amino-terminal fragment of vaccinia virus DNA topoisomerase I shows that the fragment forms a five-stranded, antiparallel beta-sheet with two short alpha-helices and connecting loops. Residues that are conserved between all eukaryotic-like type I topoisomerases are not clustered in particular regions of the structure [6].

More information about this protein can be found at Protein of the Month: DNA Topoisomerase [7].

Structural linksHelp
Database linksHelp
Enzyme: EC:5.99.1.2

Taxonomic coverageHelp

Overlapping InterPro entriesHelp
IPR013500 Numbers of overlapping proteins Average numbers of overlapping amino acids

Example proteinsHelp
O17966 DNA topoisomerase 1

P04786 DNA topoisomerase 1

P11387 DNA topoisomerase 1

P30189 DNA topoisomerase 1

Q04750 DNA topoisomerase 1

More proteins


Example Proteins Key


InterPro entry accession number/name and structure databases Colour code
IPR014727 DNA topoisomerase I, catalytic core, alpha/beta subdomain, eukaryotic-type
IPR011010 DNA breaking-rejoining enzyme, catalytic core
IPR008336 DNA topoisomerase I, DNA binding, eukaryotic-type
IPR018521 DNA topoisomerase I, active site
IPR001631 DNA topoisomerase I, C-terminal
IPR013030 DNA topoisomerase I, DNA binding, mixed alpha/beta motif, eukaryotic-type
IPR013500 DNA topoisomerase I, catalytic core, eukaryotic-type
IPR009054 DNA topoisomerases I, dispensable insert, eukaryotic-type
IPR013499 DNA topoisomerase I, C-terminal, eukaryotic-type
IPR014711 DNA topoisomerase I, catalytic core, alpha-helical subdomain, eukaryotic-type
PDB Chain
ModBase
CATH Domain
SWISS-MODEL
SCOP Domain

PublicationsHelp
1. Wang JC.
Cellular roles of DNA topoisomerases: a molecular perspective.
Nat. Rev. Mol. Cell Biol. 3 430-40 2002 [PubMed: 12042765]
http://dx.doi.org/10.1038/nrm831
2. Champoux JJ.
DNA topoisomerases: structure, function, and mechanism.
Annu. Rev. Biochem. 70 369-413 2001 [PubMed: 11395412]
http://dx.doi.org/10.1146/annurev.biochem.70.1.369
3. Gadelle D, Filee J, Buhler C, Forterre P.
Phylogenomics of type II DNA topoisomerases.
Bioessays 25 232-42 2003 [PubMed: 12596227]
http://dx.doi.org/10.1002/bies.10245
4. Tamura H, Kohchi C, Yamada R, Ikeda T, Koiwai O, Patterson E, Keene JD, Okada K, Kjeldsen E, Nishikawa K.
Molecular cloning of a cDNA of a camptothecin-resistant human DNA topoisomerase I and identification of mutation sites.
Nucleic Acids Res. 19 69-75 1991 [PubMed: 1849260]
http://dx.doi.org/10.1093/nar/19.1.69
5. Redinbo MR, Stewart L, Kuhn P, Champoux JJ, Hol WG.
Crystal structures of human topoisomerase I in covalent and noncovalent complexes with DNA.
Science 279 1504-13 1998 [PubMed: 9488644]
http://dx.doi.org/10.1126/science.279.5356.1504
6. Sharma A, Hanai R, Mondragon A.
Crystal structure of the amino-terminal fragment of vaccinia virus DNA topoisomerase I at 1.6 A resolution.
Structure 2 767-77 1994 [PubMed: 7994576]
http://dx.doi.org/10.1016/S0969-2126(94)00077-8
7. McDowall J.
Protein of the Month: DNA Topoisomerase.
2006

Additional ReadingHelp
Chrencik JE, Burgin AB, Pommier Y, Stewart L, Redinbo MR.
Structural impact of the leukemia drug 1-beta-D-arabinofuranosylcytosine (Ara-C) on the covalent human topoisomerase I-DNA complex.
J. Biol. Chem. 278 2003 12461-6 [PubMed: 12533542]
http://dx.doi.org/10.1074/jbc.M212930200
Chrencik JE, Staker BL, Burgin AB, Pourquier P, Pommier Y, Stewart L, Redinbo MR.
Mechanisms of camptothecin resistance by human topoisomerase I mutations.
J. Mol. Biol. 339 2004 773-84 [PubMed: 15165849]
http://dx.doi.org/10.1016/j.jmb.2004.03.077
Interthal H, Quigley PM, Hol WG, Champoux JJ.
The role of lysine 532 in the catalytic mechanism of human topoisomerase I.
J. Biol. Chem. 279 2004 2984-92 [PubMed: 14594810]
http://dx.doi.org/10.1074/jbc.M309959200
Staker BL, Feese MD, Cushman M, Pommier Y, Zembower D, Stewart L, Burgin AB.
Structures of three classes of anticancer agents bound to the human topoisomerase I-DNA covalent complex.
J. Med. Chem. 48 2005 2336-45 [PubMed: 15801827]
http://dx.doi.org/10.1021/jm049146p
Ioanoviciu A, Antony S, Pommier Y, Staker BL, Stewart L, Cushman M.
Synthesis and mechanism of action studies of a series of norindenoisoquinoline topoisomerase I poisons reveal an inhibitor with a flipped orientation in the ternary DNA-enzyme-inhibitor complex as determined by X-ray crystallographic analysis.
J. Med. Chem. 48 2005 4803-14 [PubMed: 16033260]
http://dx.doi.org/10.1021/jm050076b
Roca J.
The mechanisms of DNA topoisomerases.
Trends Biochem. Sci. 20 1995 156-60 [PubMed: 7770916]
http://dx.doi.org/10.1016/S0968-0004(00)88993-8
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InterPro 23.1