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タイトル: Involvement of SLX4 in interstrand cross-link repair is regulated by the Fanconi anemia pathway.
著者: Yamamoto, Kimiyo N
Kobayashi, Shunsuke
Tsuda, Masataka
Kurumizaka, Hitoshi
Takata, Minoru  kyouindb  KAKEN_id  orcid https://orcid.org/0000-0002-4926-3675 (unconfirmed)
Kono, Koichi
Takeda, Shunichi  KAKEN_id
Hirota, Kouji
著者名の別形: 山本, 君代
小林, 俊介
津田, 雅貴
髙田, 穣
武田, 俊一
廣田, 耕志
キーワード: SLX4
Fanconi anemia
interstrand cross-links
mitomycin C
cisplatin
endonuclease
発行日: 19-Apr-2011
出版者: National Academy of Sciences
誌名: Proceedings of the National Academy of Sciences (PNAS)
巻: 108
号: 16
開始ページ: 6492
終了ページ: 6496
抄録: Interstrand cross-links (ICLs) block replication and transcription and thus are highly cytotoxic. In higher eukaryotes, ICLs processing involves the Fanconi anemia (FA) pathway and homologous recombination. Stalled replication forks activate the eight-subunit FA core complex, which ubiquitylates FANCD2-FANCI. Once it is posttranslationally modified, this heterodimer recruits downstream members of the ICL repairosome, including the FAN1 nuclease. However, ICL processing has been shown to also involve MUS81-EME1 and XPF-ERCC1, nucleases known to interact with SLX4, a docking protein that also can bind another nuclease, SLX1. To investigate the role of SLX4 more closely, we disrupted the SLX4 gene in avian DT40 cells. SLX4 deficiency caused cell death associated with extensive chromosomal aberrations, including a significant fraction of isochromatid-type breaks, with sister chromatids broken at the same site. SLX4 thus appears to play an essential role in cell proliferation, probably by promoting the resolution of interchromatid homologous recombination intermediates. Because ubiquitylation plays a key role in the FA pathway, and because the N-terminal region of SLX4 contains a ubiquitin-binding zinc finger (UBZ) domain, we asked whether this domain is required for ICL processing. We found that SLX4(-/-) cells expressing UBZ-deficient SLX4 were selectively sensitive to ICL-inducing agents, and that the UBZ domain was required for interaction of SLX4 with ubiquitylated FANCD2 and for its recruitment to DNA-damage foci generated by ICL-inducing agents. Our findings thus suggest that ubiquitylated FANCD2 recruits SLX4 to DNA damage sites, where it mediates the resolution of recombination intermediates generated during the processing of ICLs.
著作権等: ©2011 by the National Academy of Sciences
This is not the published version. Please cite only the published version.
この論文は出版社版でありません。引用の際には出版社版をご確認ご利用ください。
URI: http://hdl.handle.net/2433/141829
DOI(出版社版): 10.1073/pnas.1018487108
PubMed ID: 21464321
出現コレクション:学術雑誌掲載論文等

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