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RAD51 paralogs: Roles in DNA damage signalling, recombinational repair and tumorigenesis

机译:RAD51旁系同源物:在DNA损伤信号传导,重组修复和肿瘤发生中的作用

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Chromosomal double-strand breaks (DSBs) have the potential to permanently arrest cell cycle progression and endanger cell survival. They must therefore be efficiently repaired to preserve genome integrity and functionality. Homologous recombination (HR) provides an important error-free mechanism for DSB repair in mammalian cells. In addition to RAD51, the central recombinase activity in mammalian cells, a family of proteins known as the RAD51 paralogs and consisting of five proteins (RAD51B, RAD51C, RAD51D, XRCC2 and XRCC3), play an essential role in the DNA repair reactions through HR. The RAD51 paralogs act to transduce the DNA damage signal to effector kinases and to promote break repair. However, their precise cellular functions are not fully elucidated. Here we discuss recent advances in our understanding of how these factors mediate checkpoint responses and act in the HR repair process. In addition, we highlight potential functional similarities with the BRCA2 tumour suppressor, through the recently reported links between RAD51 paralog deficiencies and tumorigenesis triggered by genome instability.
机译:染色体双链断裂(DSB)有可能永久阻止细胞周期进程并危及细胞存活。因此,必须对其进行有效修复,以保留基因组的完整性和功能性。同源重组(HR)为哺乳动物细胞中的DSB修复提供了重要的无差错机制。除RAD51外,哺乳动物细胞中的中央重组酶活性是由RAD51B,RAD51C,RAD51D,XRCC2和XRCC3五个蛋白组成的RAD51旁系同源蛋白,在通过HR进行的DNA修复反应中起着至关重要的作用。 。 RAD51旁系同源物的作用是将DNA损伤信号转导至效应子激酶并促进断裂修复。但是,它们的精确细胞功能尚未完全阐明。在这里,我们讨论了对这些因素如何介导检查站反应并在HR修复过程中起作用的理解方面的最新进展。此外,通过最近报道的RAD51旁系同源缺陷与基因组不稳定触发的肿瘤发生之间的联系,我们强调了与BRCA2肿瘤抑制物的潜在功能相似性。

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