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topoisomerase
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topoisomerase

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Also known as DNA topoisomerases, DNA topoisomerase, Topoisomerases

DNA topoisomerases (or topoisomerases) are enzymes that catalyze changes in the topological state of DNA, interconverting relaxed and supercoiled forms, linked (catenated) and unlinked species, and knotted and unknotted DNA. Topological issues in DNA arise due to the intertwined nature of its double-helical structure, which, for example, can lead to overwinding of the DNA duplex during DNA replication and transcription. If left unchanged, this torsion would eventually stop the DNA or RNA polymerases involved in these processes from continuing along the DNA helix. A second topological challenge

Key facts

Enzyme.Name
DNA Topoisomerase, ATP-dependent (type II)
Enzyme.EC_number
5.6.2.2
Enzyme.CAS_number
80449-01-0

via Wikipedia infobox

Research

26,357 papers

via PubMed

Wikidata facts

Show 2 more facts
EC enzyme number
5.6.2.1
Commons category
DNA topoisomerases
Sources (2)

via Wikidata · CC0

~23 min read

Article

27 sections
Contents
  • Discovery
  • DNA topology
  • Types
  • Type I
  • Type IA
  • Type IB
  • Type IC
  • Type II
  • Type IIA
  • Type IIB
  • As drug targets
  • Antibacterial compounds
  • Fluoroquinolones (FQs)
  • Aminocoumarins
  • Proteinaceous inhibitors
  • Anti-cancer compounds
  • Camptothecin (CPT)
  • Etoposide (VP-16)
  • Doxorubicin
  • Merbarone
  • Role of topoisomerase in transcriptional regulation
  • Topo IIβ in initiation of transcription
  • Topo IIβ regulation of gene expression
  • See also
  • References
  • Further reading
  • External links

DNA topoisomerases (or topoisomerases) are enzymes that catalyze changes in the topological state of DNA, interconverting relaxed and supercoiled forms, linked (catenated) and unlinked species, and knotted and unknotted DNA. Topological issues in DNA arise due to the intertwined nature of its double-helical structure, which, for example, can lead to overwinding of the DNA duplex during DNA replication and transcription. If left unchanged, this torsion would eventually stop the DNA or RNA polymerases involved in these processes from continuing along the DNA helix. A second topological challenge results from the linking or tangling of DNA during replication. Left unresolved, links between replicated DNA will impede cell division. The DNA topoisomerases prevent and correct these types of topological problems. They do this by binding to DNA and cutting the sugar-phosphate backbone of either one (type I topoisomerases) or both (type II topoisomerases) of the DNA strands. This transient break allows the DNA to be untangled or unwound, and, at the end of these processes, the DNA backbone is resealed. Since the overall chemical composition and connectivity of the DNA do not change, the DNA substrate and product are chemical isomers, differing only in their topology.

== Discovery ==

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