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BubR1 纺锤体检验点和染色体聚集体功能的解偶联。

Uncoupling of the spindle-checkpoint and chromosome-congression functions of BubR1.

机构信息

Department of Cell Biology, Max Planck Institute of Biochemistry, 82152 Martinsried, Germany.

出版信息

J Cell Sci. 2010 Jan 1;123(Pt 1):84-94. doi: 10.1242/jcs.056507.

Abstract

The BubR1 checkpoint protein performs multiple functions in mitosis. We have carried out a functional analysis of conserved motifs of human BubR1 (also known as BUB1B) and demonstrate that spindle assembly checkpoint (SAC) and chromosome attachment functions can be uncoupled from each other. Mutation of five proline-directed serine phosphorylation sites, identified in vivo by mass spectrometry, essentially abolishes attachment of chromosomes to the spindle but has no effect on SAC functionality. By contrast, mutation of the two conserved KEN boxes required for SAC function does not impact chromosome congression. Interestingly, the contribution of the two KEN-box motifs is not equal. Cdc20 associates with the N-terminal but not C-terminal KEN box, and mutation of the N-terminal KEN motif results in more severe acceleration of mitotic timing. Moreover, the two KEN motifs are not sufficient for maximal binding of Cdc20 and APC/C, which also requires sequences in the BubR1 C-terminus. Finally, mutation of the GLEBS motif causes loss of Bub3 interaction and mislocalization of BubR1 from the kinetochore; concomitantly, BubR1 phosphorylation as well as SAC activity and chromosome congression are impaired, indicating that the GLEBS motif is strictly required for both major functions of human BubR1.

摘要

BubR1 检查点蛋白在有丝分裂中发挥多种功能。我们对人 BubR1(也称为 BUB1B)的保守基序进行了功能分析,结果表明纺锤体组装检查点(SAC)和染色体附着功能可以彼此分离。通过质谱鉴定出的五个脯氨酸指导的丝氨酸磷酸化位点的突变,基本上消除了染色体与纺锤体的附着,但对 SAC 功能没有影响。相比之下,对于 SAC 功能必需的两个保守 KEN 盒的突变并不影响染色体向心性聚集。有趣的是,两个 KEN 基序的贡献并不相等。Cdc20 与 N 端而非 C 端 KEN 盒结合,并且 N 端 KEN 基序的突变导致有丝分裂时间的加速更为严重。此外,两个 KEN 基序不足以实现 Cdc20 和 APC/C 的最大结合,这也需要 BubR1 C 端的序列。最后,GLEBS 基序的突变导致 Bub3 相互作用的丧失和 BubR1 从着丝粒的定位错误;同时,BubR1 磷酸化以及 SAC 活性和染色体向心性聚集受损,表明 GLEBS 基序对于人 BubR1 的两个主要功能都是严格必需的。

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