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The macroH2A1.2 histone variant links ATRX loss to alternative telomere lengtheningopen access

Authors
Kim, JeongkyuSun, ChongkuiTran, Andy D.Chin, Pei-JuRuiz, Penelope D.Wang, KunGibbons, Richard J.Gamble, Mathew J.Liu, YieOberdoerffer, Philipp
Issue Date
Mar-2019
Publisher
NATURE PUBLISHING GROUP
Citation
NATURE STRUCTURAL & MOLECULAR BIOLOGY, v.26, no.3, pp 213 - 219
Pages
7
Journal Title
NATURE STRUCTURAL & MOLECULAR BIOLOGY
Volume
26
Number
3
Start Page
213
End Page
219
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/63760
DOI
10.1038/s41594-019-0192-3
ISSN
1545-9993
1545-9985
Abstract
The growth of telomerase-deficient cancers depends on the alternative lengthening of telomeres (ALT), a homology-directed telomere-maintenance pathway. ALT telomeres exhibit a unique chromatin environment and generally lack the nucleosome remodeler ATRX, pointing to an epigenetic basis for ALT. Recently, we identified a protective role for the ATRX-interacting macroH2A1.2 histone variant during homologous recombination and replication stress (RS). Consistent with an inherent susceptibility to RS, we show that human ALT telomeres are highly enriched for macroH2A1.2. However, in contrast to ATRX-proficient cells, ALT telomeres transiently lose macroH2A1.2 during acute RS to facilitate DNA double-strand break (DSB) formation, a process that is almost completely prevented by ectopic ATRX expression. Telomeric macroH2A1.2 is re-deposited in a DNA damage response (DDR)-dependent manner to promote homologous recombination-associated ALT pathways. Our findings thus identify the dynamic exchange of macroH2A1.2 on chromatin as an epigenetic link among ATRX loss, RS-induced DDR initiation and telomere maintenance via homologous recombination.
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Kim, Jeong Kyu
자연과학대학 (생명과학과)
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