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The annealing helicase SMARCAL1 maintains genome integrity at stalled replication forks

机译:退火解旋酶SMARCAL1在停滞的复制叉处维持基因组完整性

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摘要

Mutations in SMARCAL1 (HARP) cause Schimke immunoosseous dysplasia (SIOD). The mechanistic basis for this disease is unknown. Using functional genomic screens, we identified SMARCAL1 as a genome maintenance protein. Silencing and overexpression of SMARCAL1 leads to activation of the DNA damage response during S phase in the absence of any genotoxic agent. SMARCAL1 contains a Replication protein A (RPA)-binding motif similar to that found in the replication stress response protein TIPIN (Timeless-Interacting Protein), which is both necessary and sufficient to target SMARCAL1 to stalled replication forks. RPA binding is critical for the cellular function of SMARCAL1; however, it is not necessary for the annealing helicase activity of SMARCAL1 in vitro. An SIOD-associated SMARCAL1 mutant fails to prevent replication-associated DNA damage from accumulating in cells in which endogenous SMARCAL1 is silenced. Ataxia-telangiectasia mutated (ATM), ATM and Rad3-related (ATR), and DNA-dependent protein kinase (DNA-PK) phosphorylate SMARCAL1 in response to replication stress. Loss of SMARCAL1 activity causes increased RPA loading onto chromatin and persistent RPA phosphorylation after a transient exposure to replication stress. Furthermore, SMARCAL1-deficient cells are hypersensitive to replication stress agents. Thus, SMARCAL1 is a replication stress response protein, and the pleiotropic phenotypes of SIOD are at least partly due to defects in genome maintenance during DNA replication.
机译:SMARCAL1(HARP)中的突变会导致Schimke免疫性骨发育不良(SIOD)。这种疾病的机制基础尚不清楚。使用功能基因组筛选,我们确定SMARCAL1为基因组维持蛋白。在没有任何基因毒性剂的情况下,SMARCAL1的沉默和过表达导致S期DNA损伤反应的激活。 SMARCAL1包含一个复制蛋白A(RPA)结合基序,该基序类似于在复制应激反应蛋白TIPIN(永恒相互作用蛋白)中发现的基序,这对于将SMARCAL1定位到停滞的复制叉既必要又足够。 RPA结合对于SMARCAL1的细胞功能至关重要。但是,在体外SMARCAL1的退火解旋酶活性不是必需的。 SIOD相关的SMARCAL1突变体无法防止复制相关的DNA损伤在内源性SMARCAL1被沉默的细胞中积累。共济失调毛细血管扩张突变(ATM),ATM和Rad3相关(ATR)和DNA依赖性蛋白激酶(DNA-PK)响应复制压力使SMARCAL1磷酸化。 SMARCAL1活性的丧失会导致RPA在染色质上的负载增加,并在短暂暴露于复制压力后持续RPA磷酸化。此外,SMARCAL1缺陷细胞对复制应激因子高度敏感。因此,SMARCAL1是一种复制应激反应蛋白,SIOD的多效性表型至少部分是由于DNA复制过程中基因组维持的缺陷。

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