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A concomitant loss of dormant origins and FANCC exacerbates genome instability by impairing DNA replication fork progression

机译:伴随的休眠起源和FANCC丧失通过损害DNA复制叉进展而加剧了基因组不稳定性

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Accumulating evidence suggests that dormant DNA replication origins play an important role in the recovery of stalled forks. However, their functional interactions with other fork recovery mechanisms have not been tested. We previously reported intrinsic activation of the Fanconi anemia (FA) pathway in a tumor-prone mouse model (Mcm4(chaos3)) with a 60% loss of dormant origins. To understand this further, we introduced a null allele of Fancc (Fancc(-)), encoding a member of the FA core complex, into the Mcm4(chaos3) background. Primary embryonic fibroblasts double homozygous for Mcm4(chaos3) and Fancc(-) (Mcm4(chaos3/chaos3);Fancc(-/-)) showed significantly increased levels of markers of stalled/collapsed forks compared to either single homozygote. Interestingly, a loss of dormant origins also increased the number of sites in which replication was delayed until prophase, regardless of FA pathway activation. These replication defects coincided with substantially elevated levels of genome instability in Mcm4(chaos3/chaos3);Fancc(-/-) cells, resulting in a high rate of perinatal lethality of Mcm4(chaos3/chaos3);Fancc(-/-) mice and the accelerated tumorigenesis of surviving mice. Together, these findings uncover a specialized role of dormant origins in replication completion while also identifying important functional overlaps between dormant origins and the FA pathway in maintaining fork progression, genome stability, normal development and tumor suppression.C1 Shima, Naoko; Univ Minnesota, Dept Genet Cell Biol and Dev, Minneapolis, MN 55455 USASC Oncology; Genetics & Heredity
机译:累积证据表明,休眠DNA复制起源起源在停滞的叉子中发挥着重要作用。然而,它们与其他叉恢复机制的功能相互作用尚未得到测试。我们以前报告了肿瘤 - 易于小鼠模型(MCM4(CHAOS3)中的FANCONI贫血(FA)途径的内在激活,其休眠起源60%。要进一步了解这一点,我们介绍了FANCC(FANCC( - ))的无效等位基因,编码了FA核心复合体的成员,进入MCM4(CHAOS3)背景。主要胚胎成纤维细胞用于MCM4(CHAOS3)和FANCC( - )(MCM4(CHAOS3 / CHAOS3);与单一纯合子相比,FANCC( - / - ))显示出停滞/塌陷叉的显着增加。有趣的是,无论FA途径激活如何,休眠起源的损失也增加了延迟复制直至预防的遗址数。这些复制缺陷缺陷在MCM4(CHAOS3 / CHAOS3)中的基因组不稳定性的基本上升高和幸存小鼠的加速肿瘤内血。这些发现在一起发现了休眠之间的专业作用,同时还识别休眠起源与FA途径之间的重要功能重叠,在维持叉进展中,基因组稳定性,正常发育和肿瘤抑制。 - C1 Shima,Naoko;大学明尼苏达州,Dept Genet Cell Biol和Dev,Minneapolis,Mn 55455 Usasc肿瘤;遗传学与遗传

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