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PLK2 磷酸化对于中心体周期中 CPAP 在起始中心体形成过程中的功能至关重要。

PLK2 phosphorylation is critical for CPAP function in procentriole formation during the centrosome cycle.

机构信息

Department of Biological Sciences, Seoul National University, Seoul, Korea.

出版信息

EMBO J. 2010 Jul 21;29(14):2395-406. doi: 10.1038/emboj.2010.118. Epub 2010 Jun 8.


DOI:10.1038/emboj.2010.118
PMID:20531387
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2910268/
Abstract

Control of centrosome duplication is tightly linked with the progression of the cell cycle. Recent studies suggest that the fundamental process of centriole duplication is evolutionally conserved. Here, we identified centrosomal P4.1-associated protein (CPAP), a human homologue of SAS-4, as a substrate of PLK2 whose activity oscillates during the cell cycle. PLK2 phosphorylates the S589 and S595 residues of CPAP in vitro and in vivo. This phosphorylation is critical for procentriole formation during the centrosome cycle. PLK4 also phosphorylates S595 of CPAP, but PLK4 phosphorylation is not a critical step in the PLK4 function in procentriole assembly. CPAP is phosphorylated in a cell cycle stage-specific manner, so that its phosphorylation increases at the G1/S transition phase and decreases during the exit of mitosis. Phosphorylated CPAP is preferentially located at the procentriole. Furthermore, overexpression of a phospho-resistant CPAP mutant resulted in the failure to form elongated centrioles. On the basis of these results, we propose that phosphorylated CPAP is involved in procentriole assembly, possibly for centriole elongation. This work demonstrates an example of how procentriole formation is linked to the progression of the cell cycle.

摘要

中心体复制的控制与细胞周期的进展密切相关。最近的研究表明,中心体复制的基本过程在进化上是保守的。在这里,我们鉴定了中心体 P4.1 相关蛋白 (CPAP),作为 PLK2 的底物,其活性在细胞周期中呈振荡变化。PLK2 在体外和体内磷酸化 CPAP 的 S589 和 S595 残基。这种磷酸化对于中心体周期中的前中心粒形成至关重要。PLK4 还磷酸化 CPAP 的 S595,但 PLK4 磷酸化不是 PLK4 在中心粒组装中的功能的关键步骤。CPAP 以细胞周期阶段特异性的方式磷酸化,因此其磷酸化在 G1/S 转换阶段增加,并在有丝分裂退出时减少。磷酸化的 CPAP 优先位于前中心粒上。此外,过表达磷酸化抗性 CPAP 突变体导致不能形成伸长的中心粒。基于这些结果,我们提出磷酸化的 CPAP 参与前中心粒的组装,可能用于中心粒的伸长。这项工作展示了前中心粒形成如何与细胞周期的进展相关的一个例子。

相似文献

[1]
PLK2 phosphorylation is critical for CPAP function in procentriole formation during the centrosome cycle.

EMBO J. 2010-6-8

[2]
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[3]
CPAP is a cell-cycle regulated protein that controls centriole length.

Nat Cell Biol. 2009-7

[4]
Two-step phosphorylation of Ana2 by Plk4 is required for the sequential loading of Ana2 and Sas6 to initiate procentriole formation.

Open Biol. 2017-12

[5]
Cep152 acts as a scaffold for recruitment of Plk4 and CPAP to the centrosome.

J Cell Biol. 2010-11-8

[6]
Role of CAP350 in centriolar tubule stability and centriole assembly.

PLoS One. 2008

[7]
Asterless is a scaffold for the onset of centriole assembly.

Nature. 2010-9-19

[8]
Overly long centrioles and defective cell division upon excess of the SAS-4-related protein CPAP.

Curr Biol. 2009-6-23

[9]
Centrobin-centrosomal protein 4.1-associated protein (CPAP) interaction promotes CPAP localization to the centrioles during centriole duplication.

J Biol Chem. 2014-4-3

[10]
PLK4 phosphorylation of CP110 is required for efficient centriole assembly.

Cell Cycle. 2017-5-31

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本文引用的文献

[1]
Polo kinase and separase regulate the mitotic licensing of centriole duplication in human cells.

Dev Cell. 2009-9

[2]
CPAP is a cell-cycle regulated protein that controls centriole length.

Nat Cell Biol. 2009-7

[3]
Overly long centrioles and defective cell division upon excess of the SAS-4-related protein CPAP.

Curr Biol. 2009-6-23

[4]
Control of centriole length by CPAP and CP110.

Curr Biol. 2009-6-23

[5]
The SCF Slimb ubiquitin ligase regulates Plk4/Sak levels to block centriole reduplication.

J Cell Biol. 2009-1-26

[6]
The SCF/Slimb ubiquitin ligase limits centrosome amplification through degradation of SAK/PLK4.

Curr Biol. 2009-1-13

[7]
A novel function of CEP135 as a platform protein of C-NAP1 for its centriolar localization.

Exp Cell Res. 2008-12-10

[8]
Mechanisms of procentriole formation.

Trends Cell Biol. 2008-8

[9]
Functional characterization of the microtubule-binding and -destabilizing domains of CPAP and d-SAS-4.

Exp Cell Res. 2008-8-15

[10]
SAS-4 is recruited to a dynamic structure in newly forming centrioles that is stabilized by the gamma-tubulin-mediated addition of centriolar microtubules.

J Cell Biol. 2008-2-25

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