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CEP63 deficiency promotes p53-dependent microcephaly and reveals a role for the centrosome in meiotic recombination

机译:CEP63缺乏症会促进p53依赖性小头畸形,并揭示中心体在减数分裂重组中的作用

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CEP63 is a centrosomal protein that facilitates centriole duplication and is regulated by the DNA damage response. Mutations in CEP63 cause Seckel syndrome, a human disease characterized by microcephaly and dwarfism. Here we demonstrate that Cep63-deficient mice recapitulate Seckel syndrome pathology. The attrition of neural progenitor cells involves p53-dependent cell death, and brain size is rescued by the deletion of p53. Cell death is not the result of an aberrant DNA damage response but is triggered by centrosome-based mitotic errors. In addition, Cep63 loss severely impairs meiotic recombination, leading to profound male infertility. Cep63-deficient spermatocytes display numerical and structural centrosome aberrations, chromosome entanglements and defective telomere clustering, suggesting that a reduction in centrosome-mediated chromosome movements underlies recombination failure. Our results provide novel insight into the molecular pathology of microcephaly and establish a role for the centrosome in meiotic recombination.
机译:CEP63是一种中心体蛋白,可促进中心体复制,并受DNA损伤反应的调节。 CEP63的突变会导致Seckel综合征,这是一种以小头畸形和侏儒症为特征的人类疾病。在这里,我们证明了Cep63缺陷小鼠概括了Seckel综合征的病理。神经祖细胞的磨损涉及p53依赖的细胞死亡,并且通过删除p53可以挽救大脑的大小。细胞死亡不是异常DNA损伤反应的结果,而是由基于中心体的有丝分裂错误触发的。此外,Cep63的丧失严重损害了减数分裂的重组,导致严重的男性不育。缺乏Cep63的精母细胞显示出数值上和结构上的中心体畸变,染色体纠缠和端粒缺陷簇,这表明中心体介导的染色体运动减少是重组失败的基础。我们的结果为小头畸形的分子病理学提供了新的见解,并确定了中心体在减数分裂重组中的作用。

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