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TDP2 suppresses chromosomal translocations induced by DNA topoisomerase II during gene transcription
Authors
B-G Ju
C Lin
+37 more
C Meyer
C Meyer
CS Osborne
EP Rogakou
ES Hars
F Cortes Ledesma
F Gómez-Herreros
F Gómez-Herreros
F Mitelman
G Thomson
H Ghezraoui
H Hanzlikova
H Ikeda
HA Foster
IG Cowell
IG Cowell
JE Deweese
JG Blanco
JL Nitiss
KW Caldecott
M Krzywinski
MC Haffner
MR Stratton
NN Hoa
NN Hoa
P Mali
P-C Wei
R Madabhushi
R-S Mani
RJ Whitmarsh
RL Wright
Y Fu
Y Pommier
Y Pommier
YH Han
Z Zeng
Z-Q Wang
Publication date
1 January 2017
Publisher
'Springer Science and Business Media LLC'
Doi
Abstract
© The Author(s) 2017. DNA double-strand breaks (DSBs) induced by abortive topoisomerase II (TOP2) activity are a potential source of genome instability and chromosome translocation. TOP2-induced DNA double-strand breaks are rejoined in part by tyrosyl-DNA phosphodiesterase 2 (TDP2)-dependent non-homologous end-joining (NHEJ), but whether this process suppresses or promotes TOP2-induced translocations is unclear. Here, we show that TDP2 rejoins DSBs induced during transcription-dependent TOP2 activity in breast cancer cells and at the translocation ‘hotspot’, MLL. Moreover, we find that TDP2 suppresses chromosome rearrangements induced by TOP2 and reduces TOP2-induced chromosome translocations that arise during gene transcription. Interestingly, however, we implicate TDP2-dependent NHEJ in the formation of a rare subclass of translocations associated previously with therapy-related leukemia and characterized by junction sequences with 4-bp of perfect homology. Collectively, these data highlight the threat posed by TOP2-induced DSBs during transcription and demonstrate the importance of TDP2-dependent non-homologous end-joining in protecting both gene transcription and genome stability
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info:doi/10.1038%2Fs41467-017-...
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