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김홍태

Kim, Hongtae
Cancer/DNA damage Lab.
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USP39 promotes non-homologous end-joining repair by poly(ADP-ribose)-induced liquid demixing

Author(s)
Kim, Jae JinLee, Seo YunHwang, YiseulKim, SoyeonChung, Jee MinPark, SangwookYoon, JunghyunYun, HansolJi, Jae-HoonChae, SunyoungCho, HyeseongKim, Chan GilDawson, Ted M.Kim, HongtaeDawson, Valina L.Kang, Ho Chul
Issued Date
2021-11
DOI
10.1093/nar/gkab892
URI
https://scholarworks.unist.ac.kr/handle/201301/55668
Fulltext
https://academic.oup.com/nar/article/49/19/11083/6382377
Citation
NUCLEIC ACIDS RESEARCH, v.49, no.19, pp.11083 - 11102
Abstract
Mutual crosstalk among poly(ADP-ribose) (PAR), activated PAR polymerase 1 (PARP1) metabolites, and DNA repair machinery has emerged as a key regulatory mechanism of the DNA damage response (DDR). However, there is no conclusive evidence of how PAR precisely controls DDR. Herein, six deubiquitinating enzymes (DUBs) associated with PAR-coupled DDR were identified, and the role of USP39, an inactive DUB involved in spliceosome assembly, was characterized. USP39 rapidly localizes to DNA lesions in a PAR-dependent manner, where it regulates non-homologous end-joining (NHEJ) via a tripartite RG motif located in the N-terminus comprising 46 amino acids (N46). Furthermore, USP39 acts as a molecular trigger for liquid demixing in a PAR-coupled N46-dependent manner, thereby directly interacting with the XRCC4/LIG4 complex during NHEJ. In parallel, the USP39-associated spliceosome complex controls homologous recombination repair in a PAR-independent manner. These findings provide mechanistic insights into how PAR chains precisely control DNA repair processes in the DDR.
Publisher
OXFORD UNIV PRESS
ISSN
0305-1048
Keyword
DNA-DAMAGE RESPONSEPHASE-SEPARATIONDEUBIQUITYLATING ENZYMESHOMOLOGOUS RECOMBINATIONDEPENDENT RECRUITMENTADP-RIBOSYLATIONBREAK REPAIRBRCA1PHOSPHORYLATIONUBIQUITIN

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