Literature DB >> 34008964

Topoisomerase II Poisons: Converting Essential Enzymes into Molecular Scissors.

Kendra R Vann1, Alexandria A Oviatt1, Neil Osheroff2,3.   

Abstract

The extensive length, compaction, and interwound nature of DNA, together with its controlled and restricted movement in eukaryotic cells, create a number of topological issues that profoundly affect all of the functions of the genetic material. Topoisomerases are essential enzymes that modulate the topological structure of the double helix, including the regulation of DNA under- and overwinding and the removal of tangles and knots from the genome. Type II topoisomerases alter DNA topology by generating a transient double-stranded break in one DNA segment and allowing another segment to pass through the DNA gate. These enzymes are involved in a number of critical nuclear processes in eukaryotic cells, such as DNA replication, transcription, and recombination, and are required for proper chromosome structure and segregation. However, because type II topoisomerases generate double-stranded breaks in the genetic material, they also are intrinsically dangerous enzymes that have the capacity to fragment the genome. As a result of this dualistic nature, type II topoisomerases are the targets for a number of widely prescribed anticancer drugs. This article will describe the structure and catalytic mechanism of eukaryotic type II topoisomerases and will go on to discuss the actions of topoisomerase II poisons, which are compounds that stabilize DNA breaks generated by the type II enzyme and convert these essential enzymes into "molecular scissors." Topoisomerase II poisons represent a broad range of structural classes and include anticancer drugs, dietary components, and environmental chemicals.

Year:  2021        PMID: 34008964     DOI: 10.1021/acs.biochem.1c00240

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  5 in total

1.  Recognition of DNA Supercoil Handedness during Catenation Catalyzed by Type II Topoisomerases.

Authors:  Esha D Dalvie; Jordan C Stacy; Keir C Neuman; Neil Osheroff
Journal:  Biochemistry       Date:  2022-09-19       Impact factor: 3.321

2.  Topoisomerase II poisons inhibit vertebrate DNA replication through distinct mechanisms.

Authors:  Sabrina X Van Ravenstein; Kavi P Mehta; Tamar Kavlashvili; Jo Ann W Byl; Runxiang Zhao; Neil Osheroff; David Cortez; James M Dewar
Journal:  EMBO J       Date:  2022-05-16       Impact factor: 14.012

Review 3.  Human topoisomerases and their roles in genome stability and organization.

Authors:  Yves Pommier; André Nussenzweig; Shunichi Takeda; Caroline Austin
Journal:  Nat Rev Mol Cell Biol       Date:  2022-02-28       Impact factor: 113.915

4.  Etoposide-induced DNA damage is increased in p53 mutants: identification of ATR and other genes that influence effects of p53 mutations on Top2-induced cytotoxicity.

Authors:  Daniel Menendez; Jay R Anand; Carri C Murphy; Whitney J Bell; Jiaqi Fu; Nadia Slepushkina; Eugen Buehler; Scott E Martin; Madhu Lal-Nag; John L Nitiss; Michael A Resnick
Journal:  Oncotarget       Date:  2022-02-14

Review 5.  Oligonucleotide-Recognizing Topoisomerase Inhibitors (OTIs): Precision Gene Editors for Neurodegenerative Diseases?

Authors:  Ben D Bax; Dmitry Sutormin; Neil Q McDonald; Glenn A Burley; Tatyana Shelkovnikova
Journal:  Int J Mol Sci       Date:  2022-09-29       Impact factor: 6.208

  5 in total

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