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MCM9缺陷会独立于ATM途径延迟原始生殖细胞增殖。

MCM9 deficiency delays primordial germ cell proliferation independent of the ATM pathway.

作者信息

Luo Yunhai, Schimenti John C

机构信息

Department of Biomedical Sciences, Cornell University, Ithaca, New York.

出版信息

Genesis. 2015 Nov;53(11):678-84. doi: 10.1002/dvg.22901. Epub 2015 Oct 14.

Abstract

Maintenance of genome integrity is crucial for the germline, and this is reflected by lower mutation rates in gametes than somatic cells. Germ cells at different stages employ different DNA damage response (DDR) mechanisms. In response to certain DNA repair defects, primordial germ cells (PGCs) either undergo apoptosis or delayed proliferation, although little is known about the underlying mechanisms that govern these outcomes. Here, we report genetic studies of DDR pathways that underlie germ cell depletion in mice mutant for minichromosome maintenance 9 (Mcm9), a gene that plays a role in homologous recombination repair (HRR). Germ cell depletion in these mice is a result of reduced PGC numbers both before and after they arrive in the primitive gonads. This reduction was attributable to reduced proliferation, not apoptosis, and this response was independent of ATM-CHK2-TRP53-P21 signaling. This mechanism of PGC depletion differs from that in Fancm mutants, which also display reduced PGC depletion that is partially orchestrated by the ATM-TRP53-P21 pathway. Germ cell depletion in mice doubly deficient for FANCM and MCM9 was additive, indicating that the damage caused by each mutation triggers different DDR pathways to slow the cell cycle as a means to preserve genomic integrity. genesis 53:678-684, 2015. © 2015 Wiley Periodicals, Inc.

摘要

维持基因组完整性对于生殖系至关重要,这体现在配子中的突变率低于体细胞。不同阶段的生殖细胞采用不同的DNA损伤反应(DDR)机制。尽管对于控制这些结果的潜在机制知之甚少,但在某些DNA修复缺陷的情况下,原始生殖细胞(PGC)要么发生凋亡,要么增殖延迟。在这里,我们报告了对DDR途径的遗传学研究,这些途径是导致微小染色体维持蛋白9(Mcm9)突变的小鼠生殖细胞耗竭的基础,Mcm9基因在同源重组修复(HRR)中发挥作用。这些小鼠的生殖细胞耗竭是PGC到达原始性腺前后数量减少的结果。这种减少归因于增殖减少,而非凋亡,并且这种反应独立于ATM-CHK2-TRP53-P21信号传导。PGC耗竭的这种机制不同于Fancm突变体中的机制,Fancm突变体也表现出PGC耗竭减少,这部分是由ATM-TRP53-P21途径协调的。FANCM和MCM9双缺陷小鼠的生殖细胞耗竭是累加的,表明每个突变造成的损伤触发不同的DDR途径来减缓细胞周期,以此作为维持基因组完整性的一种手段。《基因》53:678 - 684,2015年。© 2015威利期刊公司

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