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PNAS Plus: Hierarchical recruitment of Plk4 and regulation of centriole biogenesis by two centrosomal scaffolds Cep192 and Cep152

机译:PNAS Plus:通过两个中心体支架Cep192和Cep152进行Plk4的分级募集和中心粒生物生成的调控

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摘要

Centrosomes play an important role in various cellular processes, including spindle formation and chromosome segregation. They are composed of two orthogonally arranged centrioles, whose duplication occurs only once per cell cycle. Accurate control of centriole numbers is essential for the maintenance of genomic integrity. Although it is well appreciated that polo-like kinase 4 (Plk4) plays a central role in centriole biogenesis, how it is recruited to centrosomes and whether this step is necessary for centriole biogenesis remain largely elusive. Here we showed that Plk4 localizes to distinct subcentrosomal regions in a temporally and spatially regulated manner, and that Cep192 and Cep152 serve as two distinct scaffolds that recruit Plk4 to centrosomes in a hierarchical order. Interestingly, Cep192 and Cep152 competitively interacted with the cryptic polo box of Plk4 through their homologous N-terminal sequences containing acidic-α-helix and N/Q-rich motifs. Consistent with these observations, the expression of either one of these N-terminal fragments was sufficient to delocalize Plk4 from centrosomes. Furthermore, loss of the Cep192- or Cep152-dependent interaction with Plk4 resulted in impaired centriole duplication that led to delayed cell proliferation. Thus, the spatiotemporal regulation of Plk4 localization by two hierarchical scaffolds, Cep192 and Cep152, is critical for centriole biogenesis.
机译:中心体在各种细胞过程中起重要作用,包括纺锤体形成和染色体分离。它们由两个正交排列的中心组成,每个细胞周期仅重复一次。精确控制中心粒数对于维持基因组完整性至关重要。尽管众所周知,马球样激酶4(Plk4)在中心粒生物发生中起着中心作用,但是如何将其募集到中心体上以及该步骤对于中心粒生物发生是否必要仍然很大。在这里,我们显示Plk4以时间和空间调控的方式定位于不同的中心核下区域,并且Cep192和Cep152充当两个不同的支架,以层次结构的顺序将Plk4募集到中心体。有趣的是,Cep192和Cep152通过含有酸性α-螺旋和富含N / Q的基序的同源N末端序列与隐秘的Plk4马球盒竞争性相互作用。与这些观察结果一致,这些N-末端片段之一的表达足以使Plk4从中心体上脱位。此外,与Plk4的Cep192或Cep152依赖性相互作用的丧失导致受损的中心粒重复,从而导致细胞增殖延迟。因此,由两个分级的支架Cep192和Cep152对Plk4定位的时空调节对于中心粒生物发生至关重要。

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