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首页> 外文期刊>Developmental biology >Caspase 9 is constitutively activated in mouse oocytes and plays a key role in oocyte elimination during meiotic prophase progression
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Caspase 9 is constitutively activated in mouse oocytes and plays a key role in oocyte elimination during meiotic prophase progression

机译:Caspase 9在小鼠卵母细胞中被组成性激活,并在减数分裂前期进程中在卵母细胞消除中起关键作用

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In many mammalian species, more than half of the initial oocyte population is eliminated by neonatal life, thus limiting the oocyte reserve for reproduction. The cause or mechanism of this major oocyte loss remains poorly understood. We examined the apoptotic pathway involved in oocyte elimination in wild-type mouse ovaries as well as in Msh5 -/- ovaries, in which all oocytes were eliminated due to a lack of double strand break repair. Immunoblot and immunofluorescence staining showed that an initiator caspase 9 and an effector caspase 7 were constitutively activated in almost all oocytes in fetal ovaries regardless of their genotypes. In caspase 9 -/- ovaries, the total number of oocytes remained high while that in wild-type ovaries steadily declined during ovarian development. Therefore, the activation of caspase 9 was required for but did not immediately lead to oocyte demise. We found that XIAP, an endogenous inhibitor of apoptosis, was also abundant in oocytes during meiotic prophase progression. On the other hand, a cleaved form of PARP1, a target of effector caspases, was localized to the nuclei of a limited number of oocytes, and the frequency of cleaved PARP1-positive oocyte nuclei increased significantly higher before all oocytes disappeared in Msh5 -/- ovaries. We conclude that the mitochondrial apoptotic pathway mediated by caspase 9 is constitutively activated in oocytes and renders the elimination of oocytes with meiotic errors, which can be captured by the cleavage of PARP1.
机译:在许多哺乳动物物种中,新生儿生命消除了超过一半的初始卵母细胞种群,从而限制了卵母细胞的繁殖能力。这种主要卵母细胞丢失的原因或机制仍然知之甚少。我们研究了野生型小鼠卵巢以及Msh5-/-卵巢中卵母细胞消除相关的凋亡途径,其中所有卵母细胞由于缺乏双链断裂修复而被消除。免疫印迹和免疫荧光染色显示,无论其基因型如何,在胎儿卵巢的几乎所有卵母细胞中,组成型启动子caspase 9和效应子caspase 7都被组成性激活。在胱天蛋白酶9-/-卵巢中,卵母细胞总数保持高水平,而在卵巢发育过程中,野生型卵巢中的卵母细胞数目却稳定下降。因此,caspase 9的激活是必需的,但并未立即导致卵母细胞死亡。我们发现XIAP,一种凋亡的内源性抑制剂,在减数分裂前期进程中在卵母细胞中也很丰富。另一方面,PARP1的裂解形式(效应子胱天蛋白酶的靶标)定位在有限数量的卵母细胞的核中,裂解的PARP1阳性卵母细胞核的频率显着升高,直到Msh5-/中所有卵母细胞消失。 -卵巢。我们得出的结论是,由半胱天冬酶9介导的线粒体凋亡途径在卵母细胞中被组成性激活,并消除了具有减数分裂错误的卵母细胞,这可以通过PARP1的裂解来捕获。

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