Broken by the Cut: A Journey into the Role of Topoisomerase II in DNA Fragility
DNA topoisomerase II (TOP2) plays a critical role in many processes such as replication and transcription, where it resolves DNA structures and relieves torsional stress. Recent evidence demonstrated the association of TOP2 with topologically associated domains (TAD) boundaries and CCCTC-binding fac...
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doaj-7e3535106dec43918d0da6558931f7272020-11-25T00:39:18ZengMDPI AGGenes2073-44252019-10-01101079110.3390/genes10100791genes10100791Broken by the Cut: A Journey into the Role of Topoisomerase II in DNA FragilityNaomi D. Atkin0Heather M. Raimer1Yuh-Hwa Wang2Department of Biochemistry and Molecular Genetics, School of Medicine, University of Virginia, Charlottesville, VA 22908, USADepartment of Biochemistry and Molecular Genetics, School of Medicine, University of Virginia, Charlottesville, VA 22908, USADepartment of Biochemistry and Molecular Genetics, School of Medicine, University of Virginia, Charlottesville, VA 22908, USADNA topoisomerase II (TOP2) plays a critical role in many processes such as replication and transcription, where it resolves DNA structures and relieves torsional stress. Recent evidence demonstrated the association of TOP2 with topologically associated domains (TAD) boundaries and CCCTC-binding factor (CTCF) binding sites. At these sites, TOP2 promotes interactions between enhancers and gene promoters, and relieves torsional stress that accumulates at these physical barriers. Interestingly, in executing its enzymatic function, TOP2 contributes to DNA fragility through re-ligation failure, which results in persistent DNA breaks when unrepaired or illegitimately repaired. Here, we discuss the biological processes for which TOP2 is required and the steps at which it can introduce DNA breaks. We describe the repair processes that follow removal of TOP2 adducts and the resultant broken DNA ends, and present how these processes can contribute to disease-associated mutations. Furthermore, we examine the involvement of TOP2-induced breaks in the formation of oncogenic translocations of leukemia and papillary thyroid cancer, as well as the role of TOP2 and proteins which repair TOP2 adducts in other diseases. The participation of TOP2 in generating persistent DNA breaks and leading to diseases such as cancer, could have an impact on disease treatment and prevention.https://www.mdpi.com/2073-4425/10/10/791dna topoisomerasesdna fragilitychromatin organizationtop2 cleavage complextopoisomerases and diseasedna repair |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Naomi D. Atkin Heather M. Raimer Yuh-Hwa Wang |
spellingShingle |
Naomi D. Atkin Heather M. Raimer Yuh-Hwa Wang Broken by the Cut: A Journey into the Role of Topoisomerase II in DNA Fragility Genes dna topoisomerases dna fragility chromatin organization top2 cleavage complex topoisomerases and disease dna repair |
author_facet |
Naomi D. Atkin Heather M. Raimer Yuh-Hwa Wang |
author_sort |
Naomi D. Atkin |
title |
Broken by the Cut: A Journey into the Role of Topoisomerase II in DNA Fragility |
title_short |
Broken by the Cut: A Journey into the Role of Topoisomerase II in DNA Fragility |
title_full |
Broken by the Cut: A Journey into the Role of Topoisomerase II in DNA Fragility |
title_fullStr |
Broken by the Cut: A Journey into the Role of Topoisomerase II in DNA Fragility |
title_full_unstemmed |
Broken by the Cut: A Journey into the Role of Topoisomerase II in DNA Fragility |
title_sort |
broken by the cut: a journey into the role of topoisomerase ii in dna fragility |
publisher |
MDPI AG |
series |
Genes |
issn |
2073-4425 |
publishDate |
2019-10-01 |
description |
DNA topoisomerase II (TOP2) plays a critical role in many processes such as replication and transcription, where it resolves DNA structures and relieves torsional stress. Recent evidence demonstrated the association of TOP2 with topologically associated domains (TAD) boundaries and CCCTC-binding factor (CTCF) binding sites. At these sites, TOP2 promotes interactions between enhancers and gene promoters, and relieves torsional stress that accumulates at these physical barriers. Interestingly, in executing its enzymatic function, TOP2 contributes to DNA fragility through re-ligation failure, which results in persistent DNA breaks when unrepaired or illegitimately repaired. Here, we discuss the biological processes for which TOP2 is required and the steps at which it can introduce DNA breaks. We describe the repair processes that follow removal of TOP2 adducts and the resultant broken DNA ends, and present how these processes can contribute to disease-associated mutations. Furthermore, we examine the involvement of TOP2-induced breaks in the formation of oncogenic translocations of leukemia and papillary thyroid cancer, as well as the role of TOP2 and proteins which repair TOP2 adducts in other diseases. The participation of TOP2 in generating persistent DNA breaks and leading to diseases such as cancer, could have an impact on disease treatment and prevention. |
topic |
dna topoisomerases dna fragility chromatin organization top2 cleavage complex topoisomerases and disease dna repair |
url |
https://www.mdpi.com/2073-4425/10/10/791 |
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