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Separase: a universal trigger for sister chromatid disjunction but not chromosome cycle progression

机译:分离酶:姐妹染色单体分离的普遍触发因素而不是染色体周期进程

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摘要

Separase is a protease whose liberation from its inhibitory chaperone Securin triggers sister chromatid disjunction at anaphase onset in yeast by cleaving cohesin's kleisin subunit. We have created conditional knockout alleles of the mouse Separase and Securin genes. Deletion of both copies of Separase but not Securin causes embryonic lethality. Loss of Securin reduces Separase activity because deletion of just one copy of the Separase gene is lethal to embryos lacking Securin. In embryonic fibroblasts, Separase depletion blocks sister chromatid separation but does not prevent other aspects of mitosis, cytokinesis, or chromosome replication. Thus, fibroblasts lacking Separase become highly polyploid. Hepatocytes stimulated to proliferate in vivo by hepatectomy also become unusually large and polyploid in the absence of Separase but are able to regenerate functional livers. Separase depletion in bone marrow causes aplasia and the presumed death of hematopoietic cells other than erythrocytes. Destruction of sister chromatid cohesion by Separase may be a universal feature of mitosis in eukaryotic cells.
机译:Separase是一种蛋白酶,其从抑制性伴侣蛋白Securin的释放中,通过裂解黏附素的kleisin亚基,可在酵母后期开始触发姐妹染色单体分离。我们创建了小鼠Separase和Securin基因的条件敲除等位基因。删除Separase的两个副本但不删除Securin会导致胚胎致死性。 Securin的丢失会降低Separase的活性,因为仅缺失Separase基因的一个拷贝对缺乏Securin的胚胎具有致命性。在胚胎成纤维细胞中,分离酶耗竭会阻止姐妹染色单体分离,但不能阻止有丝分裂,胞质分裂或染色体复制的其他方面。因此,缺乏分离酶的成纤维细胞变成高度多倍体。在没有Separase的情况下,经肝切除术刺激在体内增殖的肝细胞也变得异常大和多倍体,但能够再生功能性肝脏。骨髓中的分离酶耗竭会导致发育不全,并推测除红血球以外的造血细胞会死亡。 Separase破坏姐妹染色单体凝聚力可能是真核细胞有丝分裂的普遍特征。

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