DNA topoisomerase-targeting chemotherapeutics: what's new?

Cancer Chemother Pharmacol

Department of Pharmacology and Toxicology, University of Alabama at Birmingham, 155 Volker Hall, 1720 2nd Ave. S., Birmingham, AL, 35294-0019, USA.

Published: July 2017

AI Article Synopsis

  • Human cells use six types of DNA topoisomerases to tackle issues with the structure and function of nuclear and mitochondrial genomes and RNA.
  • These enzymes manage DNA entanglements and supercoiling by creating temporary breaks in the DNA.
  • The review discusses the structure and function of these enzymes, the cancer treatments targeting them, and current challenges in developing these therapies.

Article Abstract

To resolve the topological problems that threaten the function and structural integrity of nuclear and mitochondrial genomes and RNA molecules, human cells encode six different DNA topoisomerases including type IB enzymes (TOP1 and TOP1mt), type IIA enzymes (TOP2α and TOP2β) and type IA enzymes (TOP3α and TOP3β). DNA entanglements and the supercoiling of DNA molecules are regulated by topoisomerases through the introduction of transient enzyme-linked DNA breaks. The covalent topoisomerase-DNA complexes are the cellular targets of a diverse group of cancer chemotherapeutics, which reversibly stabilize these reaction intermediates. Here we review the structure-function and catalytic mechanisms of each family of eukaryotic DNA topoisomerases and the topoisomerase-targeting agents currently approved for patient therapy or in clinical trials, and highlight novel developments and challenges in the clinical development of these agents.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9254606PMC
http://dx.doi.org/10.1007/s00280-017-3334-5DOI Listing

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