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FBXL5-mediated degradation of single-stranded DNA-binding protein hSSB1 controls DNA damage response.


ABSTRACT: Human single-strand (ss) DNA binding proteins 1 (hSSB1) has been shown to participate in DNA damage response and maintenance of genome stability by regulating the initiation of ATM-dependent signaling. ATM phosphorylates hSSB1 and prevents hSSB1 from ubiquitin-proteasome-mediated degradation. However, the E3 ligase that targets hSSB1 for destruction is still unknown. Here, we report that hSSB1 is the bona fide substrate for an Fbxl5-containing SCF (Skp1-Cul1-F box) E3 ligase. Fbxl5 interacts with and targets hSSB1 for ubiquitination and degradation, which could be prevented by ATM-mediated hSSB1 T117 phosphorylation. Furthermore, cells overexpression of Fbxl5 abrogated the cellular response to DSBs, including activation of ATM and phosphorylation of ATM targets and exhibited increased radiosensitivity, chemosensitivity and defective checkpoint activation after genotoxic stress stimuli. Moreover, the protein levels of hSSB1 and Fbxl5 showed an inverse correlation in lung cancer cells lines and clinical lung cancer samples. Therefore, Fbxl5 may negatively modulate hSSB1 to regulate DNA damage response, implicating Fbxl5 as a novel, promising therapeutic target for lung cancers.

SUBMITTER: Chen ZW 

PROVIDER: S-EPMC4191430 | biostudies-literature | 2014 Oct

REPOSITORIES: biostudies-literature

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FBXL5-mediated degradation of single-stranded DNA-binding protein hSSB1 controls DNA damage response.

Chen Zhi-Wei ZW   Liu Bin B   Tang Nai-Wang NW   Xu Yun-Hua YH   Ye Xiang-Yun XY   Li Zi-Ming ZM   Niu Xiao-Min XM   Shen Sheng-Ping SP   Lu Shun S   Xu Ling L  

Nucleic acids research 20140923 18


Human single-strand (ss) DNA binding proteins 1 (hSSB1) has been shown to participate in DNA damage response and maintenance of genome stability by regulating the initiation of ATM-dependent signaling. ATM phosphorylates hSSB1 and prevents hSSB1 from ubiquitin-proteasome-mediated degradation. However, the E3 ligase that targets hSSB1 for destruction is still unknown. Here, we report that hSSB1 is the bona fide substrate for an Fbxl5-containing SCF (Skp1-Cul1-F box) E3 ligase. Fbxl5 interacts wit  ...[more]

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