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Separation of intra-S checkpoint protein contributions to DNA replication fork protection and genomic stability in normal human fibroblasts

机译:S内检查点蛋白对正常人成纤维细胞中DNA复制叉保护和基因组稳定性的贡献的分离

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摘要

The ATR-dependent intra-S checkpoint protects DNA replication forks undergoing replication stress. The checkpoint is enforced by ATR-dependent phosphorylation of CHK1, which is mediated by the TIMELESS-TIPIN complex and CLASPIN. Although loss of checkpoint proteins is associated with spontaneous chromosomal instability, few studies have examined the contribution of these proteins to unchallenged DNA metabolism in human cells that have not undergone carcinogenesis or crisis. Furthermore, the TIMELESS-TIPIN complex and CLASPIN may promote replication fork protection independently of CHK1 activation. Normal human fibroblasts (NHF) were depleted of ATR, CHK1, TIMELESS, TIPIN or CLASPIN and chromosomal aberrations, DNA synthesis, activation of the DNA damage response (DDR) and clonogenic survival were evaluated. This work demonstrates in NHF lines from two individuals that ATR and CHK1 promote chromosomal stability by different mechanisms that depletion of CHK1 produces phenotypes that resemble more closely the depletion of TIPIN or CLASPIN than the depletion of ATR, and that TIMELESS has a distinct contribution to suppression of chromosomal instability that is independent of its heterodimeric partner, TIPIN. Therefore, ATR, CHK1, TIMELESS-TIPIN and CLASPIN have functions for preservation of intrinsic chromosomal stability that are separate from their cooperation for activation of the intra-S checkpoint response to experimentally induced replication stress. These data reveal a complex and coordinated program of genome maintenance enforced by proteins known for their intra-S checkpoint function.
机译:依赖于ATR的Intra-S检查点可保护遭受复制压力的DNA复制叉。该检查点由CHK1的ATR依赖性磷酸化增强,该磷酸化由TIMELESS-TIPIN复合物和CLASPIN介导。尽管检查点蛋白的丢失与自发的染色体不稳定性有关,但很少有研究检查这些蛋白对未发生致癌或危机的人类细胞中无挑战的DNA代谢的贡献。此外,TIMELESS-TIPIN复合体和CLASPIN可以独立于CHK1激活来促进复制叉保护。正常人成纤维细胞(NHF)的ATR,CHK1,TIMELESS,TIPIN或CLASPIN消耗and尽,并评估了染色体畸变,DNA合成,DNA损伤反应(DDR)的激活和克隆形成存活。这项工作在来自两个个体的NHF品系中证明,ATR和CHK1通过不同的机制促进染色体稳定性,CHK1的耗竭产生的表型与TIPIN或CLASPIN的耗竭比ATR的耗竭更相似,并且TIMELESS对抑制具有明显的作用。独立于其异源二聚体伴侣TIPIN的染色体不稳定性。因此,ATR,CHK1,TIMELESS-TIPIN和CLASPIN具有保存固有染色体稳定性的功能,这些功能与其协同激活S内检查点对实验诱导的复制应激反应的作用分开。这些数据揭示了一个复杂而协调的基因组维护程序,该程序由以其S内检查点功能闻名的蛋白质执行。

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