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Multisite phosphorylation of C-Nap1 releases it from Cep135 to trigger centrosome disjunction

机译:C-Nap1的多位磷酸化将其从Cep135中释放出来,从而触发中心体分离

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摘要

During mitotic entry, centrosomes separate to establish the bipolar spindle. Delays in centrosome separation can perturb chromosome segregation and promote genetic instability. However, interphase centrosomes are physically tethered by a proteinaceous linker composed of C-Nap1 (also known as CEP250) and the filamentous protein rootletin. Linker disassembly occurs at the onset of mitosis in a process known as centrosome disjunction and is triggered by the Nek2-dependent phosphorylation of C-Nap1. However, the mechanistic consequences of C-Nap1 phosphorylation are unknown. Here, we demonstrate that Nek2 phosphorylates multiple residues within the C-terminal domain of C-Nap1 and, collectively, these phosphorylation events lead to loss of oligomerization and centrosome association. Mutations in non-phosphorylatable residues that make the domain more acidic are sufficient to release C-Nap1 from the centrosome, suggesting that it is an increase in overall negative charge that is required for this process. Importantly, phosphorylation of C-Nap1 also perturbs interaction with the core centriolar protein, Cep135, and interaction of endogenous C-Nap1 and Cep135 proteins is specifically lost in mitosis. We therefore propose that multisite phosphorylation of CNap1 by Nek2 perturbs both oligomerization and Cep135 interaction, and this precipitates centrosome disjunction at the onset of mitosis.
机译:在有丝分裂进入期间,中心体分离以建立双极纺锤体。中心体分离的延迟会扰乱染色体分离并促进遗传不稳定。但是,相间中心体在物理上由C-Nap1(也称为CEP250)和丝状蛋白rootletin组成的蛋白质接头。接头拆卸发生在有丝分裂开始的过程中,称为有中心体的分离,并由C-Nap1的Nek2依赖性磷酸化触发。但是,C-Nap1磷酸化的机制后果尚不清楚。在这里,我们证明Nek2磷酸化C-Nap1的C末端域内的多个残基,并且这些磷酸化事件共同导致寡聚化和中心体缔合的丧失。使结构域更酸性的不可磷酸化残基中的突变足以从中心体释放C-Nap1,这表明该过程需要增加总体负电荷。重要的是,C-Nap1的磷酸化也会干扰与核心中心粒蛋白Cep135的相互作用,而内源性C-Nap1和Cep135蛋白的相互作用在有丝分裂中会特别丢失。因此,我们提出Nek2对CNap1的多位磷酸化会干扰寡聚和Cep135相互作用,并且这会在有丝分裂开始时沉淀中心体分离。

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