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在缺乏哺乳动物分离酶的情况下,着丝粒从有丝分裂到间期的选择性持续连接。

The selective continued linkage of centromeres from mitosis to interphase in the absence of mammalian separase.

作者信息

Kumada Kazuki, Yao Ryoji, Kawaguchi Tokuichi, Karasawa Mika, Hoshikawa Yutaka, Ichikawa Koji, Sugitani Yoshinobu, Imoto Issei, Inazawa Johji, Sugawara Minoru, Yanagida Mitsuhiro, Noda Tetsuo

机构信息

Japanese Foundation for Cancer Research, Cancer Institute, Tokyo 135-8550, Japan.

出版信息

J Cell Biol. 2006 Mar 13;172(6):835-46. doi: 10.1083/jcb.200511126.

Abstract

Separase is an evolutionarily conserved protease that is essential for chromosome segregation and cleaves cohesin Scc1/Rad21, which joins the sister chromatids together. Although mammalian separase also functions in chromosome segregation, our understanding of this process in mammals is still incomplete. We generated separase knockout mice, reporting an essential function for mammalian separase. Separase-deficient mouse embryonic fibroblasts exhibited severely restrained increases in cell number, polyploid chromosomes, and amplified centrosomes. Chromosome spreads demonstrated that multiple chromosomes connected to a centromeric region. Live observation demonstrated that the chromosomes of separase-deficient cells condensed, but failed to segregate, although subsequent cytokinesis and chromosome decondensation proceeded normally. These results establish that mammalian separase is essential for the separation of centromeres, but not of the arm regions of chromosomes. Other cell cycle events, such as mitotic exit, DNA replication, and centrosome duplication appear to occur normally. We also demonstrated that heterozygous separase-deficient cells exhibited severely restrained increases in cell number with apparently normal mitosis in the absence of securin, which is an inhibitory partner of separase.

摘要

分离酶是一种在进化上保守的蛋白酶,对染色体分离至关重要,它能切割黏连蛋白Scc1/Rad21,后者将姐妹染色单体连接在一起。尽管哺乳动物的分离酶也在染色体分离中发挥作用,但我们对哺乳动物中这一过程的理解仍不完整。我们培育出了分离酶基因敲除小鼠,揭示了哺乳动物分离酶的重要功能。缺乏分离酶的小鼠胚胎成纤维细胞在细胞数量增加、多倍体染色体形成以及中心体扩增方面受到严重抑制。染色体铺展显示多条染色体连接在一个着丝粒区域。实时观察表明,缺乏分离酶的细胞中的染色体发生了浓缩,但未能分离,尽管随后的胞质分裂和染色体解聚过程正常进行。这些结果表明,哺乳动物的分离酶对于着丝粒的分离是必不可少的,但对染色体臂区域的分离并非如此。其他细胞周期事件,如有丝分裂退出、DNA复制和中心体复制似乎正常发生。我们还证明,在没有分离酶抑制伴侣securin的情况下,杂合分离酶缺陷细胞在细胞数量增加方面受到严重抑制,且有丝分裂明显正常。

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