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IPR003601

Description

IPR003601 is a DNA topoisomerase, type IA, domain 2.

<p>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 [[cite:PUB00005437]]. 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 [[cite:PUB00020794], [cite:PUB00016842]]. DNA topoisomerases are divided into two classes: type I enzymes ([ec:5.6.2.2]; topoisomerases I, III and V) break single-strand DNA, and type II enzymes ([ec:5.6.2.2]; topoisomerases II, IV and VI) break double-strand DNA [[cite:PUB00020793]].</p> <p>Type I topoisomerases are ATP-independent enzymes (except for reverse gyrase), and can be subdivided according to their structure and reaction mechanisms: type IA (Topo IA; bacterial and archaeal topoisomerase I, topoisomerase III and reverse gyrase) and type IB (Topo 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 function is vital for the processes of replication, transcription, and recombination. Unlike Topo IA enzymes, Topo IB enzymes do not require a single-stranded region of DNA or metal ions for their function. The type IB family of DNA topoisomerases includes eukaryotic nuclear topoisomerase I, topoisomerases of poxviruses, and bacterial versions of Topo IB [[cite:PUB00081705]]. They belong to the superfamily of DNA breaking-rejoining enzymes, which share the same fold in their C-terminal catalytic domain and the overall reaction mechanism with tyrosine recombinases [[cite:PUB00081702], [cite:PUB00005230]]. The C-terminal catalytic domain in topoisomerases is linked to a divergent N-terminal domain that shows no sequence or structure similarity to the N-terminal domains of tyrosine recombinases [[cite:PUB00081703], [cite:PUB00081704]].</p> <p>This entry describes domain 2 found in type IA topoisomerases, which may be an extension of the Toprim domain. The structures of bacterial topoisomerases I and III have been shown to consist of four domains that together form a toroidal structure with a central hole large enough to accommodate single- and double-stranded DNA. The N-terminal Toprim domain together with domain 3 forms the active site of the enzyme, while domains 2 and 4 form a single-strand DNA-binding groove [[cite:PUB00020796], [cite:PUB00020799]]. The Toprim domain ([interpro:IPR006171]) forms a compact Rossmann fold that coordinates the Mg+2 ion [[cite:PUB00004485]].</p>

This description is obtained from EB-eye REST.

Associated GO terms

GO predictions are based solely on the InterPro-to-GO mappings published by EMBL-EBI, which are in turn based on the mapping of predicted domains to the InterPro dataset. The InterPro-to-GO mapping was last updated on , while the GO metadata was last updated on .

GO term Namespace Name Definition Relationships
Molecular function DNA binding Any molecular function by which a gene product interacts selectively and non-covalently with DNA (deoxyribonucleic acid).
Molecular function DNA topoisomerase activity Catalysis of the transient cleavage and passage of individual DNA strands or double helices through one another, resulting a topological transformation in double-stranded DNA.
Biological process DNA topological change The process in which a transformation is induced in the topological structure of a double-stranded DNA helix, resulting in a change in linking number.

Associated Lotus transcripts 11

Transcript Name Description Predicted domains Domain count
PREDICTED: DNA topoisomerase 3-alpha-like [Cicer arietinum] gi|502137087|ref|XP_004502963.1| 17
PREDICTED: DNA topoisomerase 1-like isoform X1 [Cicer arietinum] gi|502124515|ref|XP_004498560.1| 34
PREDICTED: DNA topoisomerase 1-like isoform X1 [Cicer arietinum] gi|502124515|ref|XP_004498560.1| 34
DNA topoisomerase; TAIR: AT5G63920.1 topoisomerase 3alpha; Swiss-Prot: sp|Q9LVP1|TOP3A_ARATH DNA topoisomerase 3-alpha; TrEMBL-Plants: tr|A0A0S3RFA9|A0A0S3RFA9_PHAAN DNA topoisomerase; Found in the gene: LotjaGi1g1v0321800 40
DNA topoisomerase family protein; TAIR: AT4G31210.1 DNA topoisomerase, type IA, core; Swiss-Prot: sp|Q4UM42|TOP1_RICFE DNA topoisomerase 1; TrEMBL-Plants: tr|K7M6M6|K7M6M6_SOYBN Uncharacterized protein; Found in the gene: LotjaGi5g1v0067100 36
DNA topoisomerase family protein; TAIR: AT4G31210.1 DNA topoisomerase, type IA, core; Swiss-Prot: sp|Q4UM42|TOP1_RICFE DNA topoisomerase 1; TrEMBL-Plants: tr|K7M6M6|K7M6M6_SOYBN Uncharacterized protein; Found in the gene: LotjaGi5g1v0067100 36
DNA topoisomerase; TAIR: AT2G32000.1 DNA topoisomerase, type IA, core; Swiss-Prot: sp|F4ISQ7|TOP3B_ARATH DNA topoisomerase 3-beta; TrEMBL-Plants: tr|I1LN46|I1LN46_SOYBN DNA topoisomerase; Found in the gene: LotjaGi6g1v0103100 28
DNA topoisomerase; TAIR: AT2G32000.2 DNA topoisomerase, type IA, core; Swiss-Prot: sp|F4ISQ7|TOP3B_ARATH DNA topoisomerase 3-beta; TrEMBL-Plants: tr|A0A0R0HWC7|A0A0R0HWC7_SOYBN DNA topoisomerase; Found in the gene: LotjaGi6g1v0103100 25
DNA topoisomerase; TAIR: AT2G32000.1 DNA topoisomerase, type IA, core; Swiss-Prot: sp|F4ISQ7|TOP3B_ARATH DNA topoisomerase 3-beta; TrEMBL-Plants: tr|I1LN46|I1LN46_SOYBN DNA topoisomerase; Found in the gene: LotjaGi6g1v0103100 29
DNA topoisomerase; TAIR: AT2G32000.1 DNA topoisomerase, type IA, core; Swiss-Prot: sp|F4ISQ7|TOP3B_ARATH DNA topoisomerase 3-beta; TrEMBL-Plants: tr|I1LN46|I1LN46_SOYBN DNA topoisomerase; Found in the gene: LotjaGi6g1v0103100 25
DNA topoisomerase; TAIR: AT2G32000.1 DNA topoisomerase, type IA, core; Swiss-Prot: sp|F4ISQ7|TOP3B_ARATH DNA topoisomerase 3-beta; TrEMBL-Plants: tr|I1LN46|I1LN46_SOYBN DNA topoisomerase; Found in the gene: LotjaGi6g1v0103100 28

Co-occuring domains 1

A list of co-occurring predicted domains within the L. japonicus gene space:

Predicted domain Source Observations Saturation (%)
mobidb-lite MobiDBLite 1 9.09