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KNL1/Spc105 将 PP1 招募到纺锤体组装检查点以使其沉默。

KNL1/Spc105 recruits PP1 to silence the spindle assembly checkpoint.

机构信息

Laboratory of Chromosome and Cell Biology, The Rockefeller University, New York, NY 10065, USA.

出版信息

Curr Biol. 2011 Jun 7;21(11):942-7. doi: 10.1016/j.cub.2011.04.011.

Abstract

The spindle assembly checkpoint (SAC) delays anaphase onset until kinetochores accomplish bioriented microtubule attachments [1]. Although several centromeric and kinetochore kinases, including Aurora B, regulate kinetochore-microtubule attachment and/or SAC activation [2-4], the molecular mechanism that translates bioriented attachment into SAC silencing remains unclear [5]. Employing a method to rapidly induce exact gene replacement in budding yeast [6], we show here that the binding of protein phosphatase 1 (PP1/Glc7) to the evolutionarily conserved RVSF motif of the kinetochore protein Spc105 (KNL1/Blinkin/CASC5) is essential for viability by silencing the SAC, while it plays an auxiliary nonessential role for physical chromosome segregation. Although Aurora B may inhibit this binding, persistent PP1-Spc105 interaction does not affect chromosome segregation and is insufficient to silence the SAC in the absence of microtubules, indicating that dynamic regulation of this interaction is dispensable. However, the amount of PP1 targeted to kinetochores must be finely tuned, because recruitment of either no or one extra copy of PP1 to Spc105 is detrimental, illustrating the vital impact of targeting an exiguous fraction of PP1 to the kinetochore. We propose that the PP1-Spc105 interaction enables local regulation of dynamic phosphorylation and dephosphorylation at the kinetochore to couple microtubule attachment and SAC silencing.

摘要

纺锤体组装检查点 (SAC) 会延迟后期起始,直到动粒完成有丝分裂纺锤体微管的正确连接[1]。虽然包括 Aurora B 在内的几种着丝粒和动粒激酶调节着动粒-微管的连接和/或 SAC 的激活[2-4],但将有丝分裂纺锤体微管正确连接转化为 SAC 沉默的分子机制尚不清楚[5]。采用一种在 budding yeast 中快速诱导精确基因替换的方法[6],我们在此表明,蛋白磷酸酶 1(PP1/Glc7)与动粒蛋白 Spc105(KNL1/Blinkin/CASC5)上进化保守的 RVSF 基序的结合对于通过沉默 SAC 是必需的,而对于物理染色体分离则起着辅助性的非必需作用。虽然 Aurora B 可能会抑制这种结合,但持续的 PP1-Spc105 相互作用不会影响染色体分离,并且在没有微管的情况下不足以沉默 SAC,这表明这种相互作用的动态调节是可有可无的。然而,靶向到动粒的 PP1 数量必须进行精细的调整,因为 Spc105 上募集的 PP1 要么没有,要么只有一个额外的拷贝,这是有害的,这说明了将 PP1 的一小部分靶向到动粒的重要影响。我们提出,PP1-Spc105 相互作用能够在动粒处对动态磷酸化和去磷酸化进行局部调节,从而将微管连接和 SAC 沉默偶联起来。

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