Redli Patrick M, Gasic Ivana, Meraldi Patrick, Nigg Erich A, Santamaria Anna
Growth and Development, Biozentrum, University of Basel, 4056 Basel, Switzerland.
Department of Cell Physiology and Metabolism, Medical Faculty, University of Geneva, 1211 Geneva, Switzerland.
J Cell Biol. 2016 Oct 10;215(1):77-93. doi: 10.1083/jcb.201603019. Epub 2016 Oct 3.
Chromosome biorientation and accurate segregation rely on the plasticity of kinetochore-microtubule (KT-MT) attachments. Aurora B facilitates KT-MT dynamics by phosphorylating kinetochore proteins that are critical for KT-MT interactions. Among the substrates whose microtubule and kinetochore binding is curtailed by Aurora B is the spindle and kinetochore-associated (Ska) complex, a key factor for KT-MT stability. Here, we show that Ska is not only a substrate of Aurora B, but is also required for Aurora B activity. Ska-deficient cells fail to biorient and display chromosome segregation errors underlying suppressed KT-MT turnover. These defects coincide with KNL1-Mis12-Ndc80 network hypophosphorylation, reduced mitotic centromere-associated kinesin localization, and Aurora B T-loop phosphorylation at kinetochores. We further show that Ska requires its microtubule-binding capability to promote Aurora B activity in cells and stimulates Aurora B catalytic activity in vitro. Finally, we show that protein phosphatase 1 counteracts Aurora B activity to enable Ska kinetochore accumulation once biorientation is achieved. We propose that Ska promotes Aurora B activity to limit its own microtubule and kinetochore association and to ensure that KT-MT dynamics and stability fall within an optimal balance for biorientation.
染色体双定向和精确分离依赖于动粒-微管(KT-MT)附着的可塑性。Aurora B通过磷酸化对KT-MT相互作用至关重要的动粒蛋白来促进KT-MT动态变化。其微管和动粒结合因Aurora B而减少的底物包括纺锤体和动粒相关(Ska)复合体,这是KT-MT稳定性的关键因素。在此,我们表明Ska不仅是Aurora B的底物,而且对Aurora B的活性也是必需的。缺乏Ska的细胞无法进行双定向,并表现出染色体分离错误,这是由于KT-MT周转受抑制所致。这些缺陷与KNL1-Mis12-Ndc80网络的低磷酸化、有丝分裂着丝粒相关驱动蛋白定位减少以及着丝粒处Aurora B T环磷酸化相一致。我们进一步表明,Ska需要其微管结合能力来促进细胞中的Aurora B活性,并在体外刺激Aurora B催化活性。最后,我们表明蛋白磷酸酶1对抗Aurora B活性,以便在实现双定向后使Ska在着丝粒处积累。我们提出,Ska促进Aurora B活性以限制其自身与微管和动粒的结合,并确保KT-MT动态变化和稳定性在双定向的最佳平衡范围内。