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TDP2 suppresses genomic instability induced by androgens in the epithelial cells of prostate glands.

Authors :
Al Mahmud MR
Ishii K
Bernal-Lozano C
Delgado-Sainz I
Toi M
Akamatsu S
Fukumoto M
Watanabe M
Takeda S
Cortés-Ledesma F
Sasanuma H
Source :
Genes to cells : devoted to molecular & cellular mechanisms [Genes Cells] 2020 Jul; Vol. 25 (7), pp. 450-465. Date of Electronic Publication: 2020 May 05.
Publication Year :
2020

Abstract

Androgens stimulate the proliferation of epithelial cells in the prostate by activating topoisomerase 2 (TOP2) and regulating the transcription of target genes. TOP2 resolves the entanglement of genomic DNA by transiently generating double-strand breaks (DSBs), where TOP2 homodimers covalently bind to 5' DSB ends, called TOP2-DNA cleavage complexes (TOP2ccs). When TOP2 fails to rejoin TOP2ccs generating stalled TOP2ccs, tyrosyl DNA phosphodiesterase-2 (TDP2) removes 5' TOP2 adducts from stalled TOP2ccs prior to the ligation of the DSBs by nonhomologous end joining (NHEJ), the dominant DSB repair pathway in G <subscript>0</subscript> /G <subscript>1</subscript> phases. We previously showed that estrogens frequently generate stalled TOP2ccs in G <subscript>0</subscript> /G <subscript>1</subscript> phases. Here, we show that physiological concentrations of androgens induce several DSBs in individual human prostate cancer cells during G <subscript>1</subscript> phase, and loss of TDP2 causes a five times higher number of androgen-induced chromosome breaks in mitotic chromosome spreads. Intraperitoneally injected androgens induce several DSBs in individual epithelial cells of the prostate in TDP2-deficient mice, even at 20 hr postinjection. In conclusion, physiological concentrations of androgens have very strong genotoxicity, most likely by generating stalled TOP2ccs.<br /> (© 2020 The Authors. Genes to Cells published by Molecular Biology Society of Japan and John Wiley & Sons Australia, Ltd.)

Details

Language :
English
ISSN :
1365-2443
Volume :
25
Issue :
7
Database :
MEDLINE
Journal :
Genes to cells : devoted to molecular & cellular mechanisms
Publication Type :
Academic Journal
Accession number :
32277721
Full Text :
https://doi.org/10.1111/gtc.12770