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Filia Is an ESC-Specific Regulator of DNA Damage Response and Safeguards Genomic Stability.


ABSTRACT: Pluripotent stem cells (PSCs) hold great promise in cell-based therapy, but the genomic instability seen in culture hampers their full application. A greater understanding of the factors that regulate genomic stability in PSCs could help address this issue. Here we describe the identification of Filia as a specific regulator of genomic stability in mouse embryonic stem cells (ESCs). Filia expression is induced by genotoxic stress. Filia promotes centrosome integrity and regulates the DNA damage response (DDR) through multiple pathways, including DDR signaling, cell-cycle checkpoints and damage repair, ESC differentiation, and apoptosis. Filia depletion causes ESC genomic instability, induces resistance to apoptosis, and promotes malignant transformation. As part of its role in DDR, Filia interacts with PARP1 and stimulates its enzymatic activity. Filia also constitutively resides on centrosomes and translocates to DNA damage sites and mitochondria, consistent with its multifaceted roles in regulating centrosome integrity, damage repair, and apoptosis.

SUBMITTER: Zhao B 

PROVIDER: S-EPMC4610728 | biostudies-literature | 2015 Jun

REPOSITORIES: biostudies-literature

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Filia Is an ESC-Specific Regulator of DNA Damage Response and Safeguards Genomic Stability.

Zhao Bo B   Zhang Wei-Dao WD   Duan Ying-Liang YL   Lu Yong-Qing YQ   Cun Yi-Xian YX   Li Chao-Hui CH   Guo Kun K   Nie Wen-Hui WH   Li Lei L   Zhang Rugang R   Zheng Ping P  

Cell stem cell 20150430 6


Pluripotent stem cells (PSCs) hold great promise in cell-based therapy, but the genomic instability seen in culture hampers their full application. A greater understanding of the factors that regulate genomic stability in PSCs could help address this issue. Here we describe the identification of Filia as a specific regulator of genomic stability in mouse embryonic stem cells (ESCs). Filia expression is induced by genotoxic stress. Filia promotes centrosome integrity and regulates the DNA damage  ...[more]

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