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タイトル: WRN participates in translesion synthesis pathway through interaction with NBS1.
著者: Kobayashi, Junya  KAKEN_id
Okui, Michiyo
Asaithamby, Aroumougame
Burma, Sandeep
Chen, Benjamin P C
Tanimoto, Keiji
Matsuura, Shinya
Komatsu, Kenshi  KAKEN_id
Chen, David J
著者名の別形: 小林, 純也
キーワード: WRN
NBS1
TLS
PCNA
Rad18
発行日: Jun-2010
出版者: Elsevier Ireland Ltd.
誌名: Mechanisms of ageing and development
巻: 131
号: 6
開始ページ: 436
終了ページ: 444
抄録: Werner syndrome (WS), caused by mutation of the WRN gene, is an autosomal recessive disorder associated with premature aging and predisposition to cancer. WRN belongs to the RecQ DNA helicase family, members of which play a role in maintaining genomic stability. Here, we demonstrate that WRN rapidly forms discrete nuclear foci in an NBS1-dependent manner following DNA damage. NBS1 physically interacts with WRN through its FHA domain, which interaction is important for the phosphorylation of WRN. WRN subsequently forms DNA damage-dependent foci during the S phase, but not in the G1 phase. WS cells exhibit an increase in spontaneous focus formation of poleta and Rad18, which are important for translesion synthesis (TLS). WRN also interacts with PCNA in the absence of DNA damage, but DNA damage induces the dissociation of PCNA from WRN, leading to the ubiquitination of PCNA, which is essential for TLS. This dissociation correlates with ATM/NBS1-dependent degradation of WRN. Moreover, WS cells show constitutive ubiquitination of PCNA and interaction between PCNA and Rad18 E3 ligase in the absence of DNA damage. Taken together, these results indicate that WRN participates in the TLS pathway to prevent genomic instability in an ATM/NBS1-dependent manner.
著作権等: © 2010 Elsevier Ireland Ltd.
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。
This is not the published version. Please cite only the published version.
URI: http://hdl.handle.net/2433/126658
DOI(出版社版): 10.1016/j.mad.2010.06.005
PubMed ID: 20600238
出現コレクション:学術雑誌掲載論文等

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