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Bub1通过激活纺锤体检查点来维持着丝粒黏连。

Bub1 maintains centromeric cohesion by activation of the spindle checkpoint.

作者信息

Perera David, Tilston Valerie, Hopwood Jane A, Barchi Marco, Boot-Handford Raymond P, Taylor Stephen S

机构信息

Faculty of Life Sciences, University of Manchester, Michael Smith Building, Oxford Road, Manchester M13 9PT, United Kingdom.

出版信息

Dev Cell. 2007 Oct;13(4):566-79. doi: 10.1016/j.devcel.2007.08.008.

Abstract

Bub1 is a component of the spindle assembly checkpoint (SAC), a surveillance mechanism that ensures genome stability by delaying anaphase until all the chromosomes are stably attached to spindle microtubules via their kinetochores. To define Bub1's role in chromosome segregation, embryogenesis, and tissue homeostasis, we generated a mouse strain in which BUB1 can be inactivated by administration of tamoxifen, thereby bypassing the preimplantation lethality associated with the Bub1 null phenotype. We show that Bub1 is essential for postimplantation embryogenesis and proliferation of primary embryonic fibroblasts. Bub1 inactivation in adult males inhibits proliferation in seminiferous tubules, reducing sperm production and causing infertility. In culture, Bub1-deficient fibroblasts fail to align their chromosomes or sustain SAC function, yielding a highly aberrant mitosis that prevents further cell divisions. Centromeres in Bub1-deficient cells also separate prematurely; however, we show that this is a consequence of SAC dysfunction rather than a direct role for Bub1 in protecting centromeric cohesion.

摘要

Bub1是纺锤体组装检查点(SAC)的一个组成部分,SAC是一种监测机制,通过延迟后期来确保基因组稳定性,直到所有染色体通过其动粒稳定地附着在纺锤体微管上。为了确定Bub1在染色体分离、胚胎发生和组织稳态中的作用,我们构建了一种小鼠品系,在该品系中,通过给予他莫昔芬可以使BUB1失活,从而绕过与Bub1基因敲除表型相关的植入前致死性。我们发现Bub1对植入后胚胎发生和原代胚胎成纤维细胞的增殖至关重要。成年雄性小鼠中Bub1失活会抑制生精小管中的细胞增殖,减少精子生成并导致不育。在培养过程中,缺乏Bub1的成纤维细胞无法使染色体排列或维持SAC功能,产生高度异常的有丝分裂,从而阻止进一步的细胞分裂。缺乏Bub1的细胞中的着丝粒也会过早分离;然而,我们发现这是SAC功能障碍的结果,而不是Bub1在保护着丝粒黏连方面的直接作用。

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