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首页> 外文期刊>Nature Communications >BRCA2 suppresses replication stress-induced mitotic and G1 abnormalities through homologous recombination
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BRCA2 suppresses replication stress-induced mitotic and G1 abnormalities through homologous recombination

机译:BRCA2通过同源重组抑制复制应激诱导的有丝分裂和G1异常

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摘要

Mutations in the tumor suppressor BRCA2 predominantly predispose to breast cancer. Paradoxically, while loss of BRCA2 promotes tumor formation, it also causes cell lethality, although how lethality is triggered is unclear. Here, we generate BRCA2 conditional non-transformed human mammary epithelial cell lines using CRISPR-Cas9. Cells are inviable upon BRCA2 loss, which leads to replication stress associated with under replication, causing mitotic abnormalities, 53BP1 nuclear body formation in the ensuing G1 phase, and G1 arrest. Unexpected from other systems, the role of BRCA2 in homologous recombination, but not in stalled replication fork protection, is primarily associated with supporting human mammary epithelial cell viability, and, moreover, preventing replication stress, a hallmark of pre-cancerous lesions. Thus, we uncover a DNA under replication-53BP1 nuclear body formation-G1 arrest axis as an unanticipated outcome of homologous recombination deficiency, which triggers cell lethality and, we propose, serves as a barrier that must be overcome for tumor formation.
机译:肿瘤抑制因子BRCA2中的突变主要是乳腺癌。矛盾的是,虽然BRCA2的丢失促进了肿瘤的形成,但它还导致了细胞的致死性,尽管尚不清楚致死性的触发方式。在这里,我们使用CRISPR-Cas9生成BRCA2条件性非转化人类乳腺上皮细胞系。 BRCA2丢失会导致细胞无法存活,从而导致复制压力与复制不足相关,从而导致有丝分裂异常,随后的G1期形成53BP1核小体以及G1停滞。不同于其他系统,BRCA2在同源重组中的作用而不是在停滞的复制叉保护中的作用,主要与支持人类乳腺上皮细胞的生存能力有关,此外,还可以防止复制压力,这是癌前病变的标志。因此,我们发现了DNA-53BP1核体形成-G1阻滞轴下的DNA,这是同源重组缺陷的未预料到的结果,这会触发细胞杀伤力,并且我们提出,它是肿瘤形成必须克服的障碍。

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