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Mps1 Phosphorylation Sites Regulate the Function of Centrin 2 in Centriole Assembly

机译:Mps1磷酸化位点调节离心蛋白装配中的离心蛋白2的功能。

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The nondegradable Mps1Δ12/13 protein drives centriole overproduction, suggesting that Mps1 phosphorylates a subset of centrosomal proteins to drive the assembly of new centrioles. Here we identify three Mps1 phosphorylation sites within the centriolar protein Centrin 2 (Cetn2). Although centrioles can be assembled in the absence of Cetn2, centriole assembly is attenuated in the absence of Cetn2. While wild-type Cetn2 can compensate for this attenuation, a nonphosphorylatable version cannot. In addition, overexpressing Cetn2 causes Mps1-dependent centriole overproduction that requires each of the three Mps1 phosphorylation sites within Cetn2 and is greatly exacerbated by mimicking phosphorylation at any of these sites. Wild-type Cetn2 generates excess foci that are competent as mitotic spindle poles in HsSas-6–depleted cells, suggesting that Cetn2 can organize a subset of centriolar proteins independently of cartwheels. However, centriole overproduction caused by a phosphomimetic Cetn2 mutant requires HsSas-6, suggesting that Cetn2 phosphorylation stimulates the canonical centriole assembly pathway. Moreover, in the absence of Cetn2, Mps1Δ12/13 cannot drive the production of mature centrioles capable of recruiting γ-Tubulin, and a nonphosphorylatable Cetn2 mutant cannot compensate for this defect and exacerbates Cetn2 depletion. Together, our data suggest that Mps1-dependent phosphorylation of Cetn2 stimulates the canonical centriole assembly pathway.
机译:不可降解的Mps1 Δ12/ 13 蛋白驱动着中心粒的过度生产,这表明Mps1使一部分中心体蛋白磷酸化,从而驱动新的中心粒的组装。在这里,我们确定了中心粒蛋白Centrin 2(Cetn2)中的三个Mps1磷酸化位点。尽管在没有Cetn2的情况下可以组装中心粒,但是在没有Cetn2的情况下可以减弱中心粒的组装。尽管野生型Cetn2可以补偿这种衰减,但不可磷酸化的版本却不能。此外,过度表达的Cetn2会导致Mps1依赖性中心粒过度生产,这需要Cetn2内的三个Mps1磷酸化位点中的每一个,并且通过模仿这些位点中的任何一个而大大加剧。野生型Cetn2产生了过量的病灶,可作为HsSas-6缺失细胞中的有丝分裂纺锤体极,表明Cetn2可以独立于车轮而不组织车轮状心蛋白。但是,由模拟拟南芥Cetn2突变体引起的中心粒过度生产需要HsSas-6,这表明Cetn2磷酸化会刺激规范的中心粒装配路径。此外,在没有Cetn2的情况下,Mps1 Δ12/ 13 不能驱动能够募集γ-微管蛋白的成熟中心粒的产生,不可磷酸化的Cetn2突变体不能弥补这一缺陷并加剧Cetn2的消耗。在一起,我们的数据表明Cetn2的Mps1依赖的磷酸化刺激规范的中心体组装途径。

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