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首页> 外文期刊>Nature Communications >Bub1 autophosphorylation feeds back to regulate kinetochore docking and promote localized substrate phosphorylation
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Bub1 autophosphorylation feeds back to regulate kinetochore docking and promote localized substrate phosphorylation

机译:Bub1自磷酸化反馈以调节线粒体对接并促进局部底物磷酸化

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During mitosis, Bub1 kinase phosphorylates histone H2A-T120 to promote centromere sister chromatid cohesion through recruitment of shugoshin (Sgo) proteins. The regulation and dynamics of H2A-T120 phosphorylation are poorly understood. Using quantitative phosphoproteomics we show that Bub1 is autophosphorylated at numerous sites. We confirm mitosis-specific autophosphorylation of a several residues and show that Bub1 activation is primed in interphase but fully achieved only in mitosis. Mutation of a single autophosphorylation site T589 alters kinetochore turnover of Bub1 and results in uniform H2A-T120 phosphorylation and Sgo recruitment along chromosome arms. Consequently, improper sister chromatid resolution and chromosome segregation errors are observed. Kinetochore tethering of Bub1-T589A refocuses H2A-T120 phosphorylation and Sgo1 to centromeres. Recruitment of the Bub1-Bub3-BubR1 axis to kinetochores has recently been extensively studied. Our data provide novel insight into the regulation and kinetochore residency of Bub1 and indicate that its localization is dynamic and tightly controlled through feedback autophosphorylation.
机译:在有丝分裂期间,Bub1激酶使组蛋白H2A-T120磷酸化,从而通过募集shugoshin(Sgo)蛋白来促进着丝粒姐妹染色单体凝聚。对H2A-T120磷酸化的调控和动力学了解甚少。使用定量磷酸化蛋白质组学,我们显示Bub1在许多位点都被自身磷酸化了。我们确认了几个残基的有丝分裂特异的自磷酸化,并显示Bub1激活在相间引发,但仅在有丝分裂中完全实现。单个自磷酸化位点T589的突变会改变Bub1的动线粒周转率,并导致沿染色体臂均匀的H2A-T120磷酸化和Sgo募集。因此,观察到不正确的姐妹染色单体分辨率和染色体偏析错误。 Bub1-T589A的线粒体束缚将H2A-T120磷酸化和Sgo1重新集中到着丝粒。最近已经广泛研究了将Bub1-Bub3-BubR1轴招募到动植物。我们的数据为Bub1的调控和动线虫驻留提供了新颖的见解,并表明其本地化是动态的,并通过反馈自磷酸化得到严格控制。

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