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人类磷酸酶 CDC14A 通过调节中心体肌动蛋白成核来调节初级纤毛长度。

The human phosphatase CDC14A modulates primary cilium length by regulating centrosomal actin nucleation.

机构信息

DKFZ-ZMBH Allianz, Zentrum für Molekulare Biologie der Universität Heidelberg, Heidelberg, Germany.

Department of Biochemistry and Molecular Biology, Jahangirnagar University, Dhaka, Bangladesh.

出版信息

EMBO Rep. 2019 Jan;20(1). doi: 10.15252/embr.201846544. Epub 2018 Nov 22.

Abstract

CDC14A codes for a conserved proline-directed phosphatase, and mutations in the gene are associated with autosomal-recessive severe to profound deafness, due to defective kinocilia. A role of CDC14A in cilia formation has also been described in other organisms. However, how human CDC14A impacts on cilia formation remains unclear. Here, we show that human RPE1 hCDC14A cells, encoding a phosphatase dead version of hCDC14A, have longer cilia than wild-type cells, while hCDC14A overexpression reduces cilia formation. Phospho-proteome analysis of ciliated RPE1 cells identified actin-associated and microtubule binding proteins regulating cilia length as hCDC14A substrates, including the actin-binding protein drebrin. Indeed, we find that hCDC14A counteracts the CDK5-dependent phosphorylation of drebrin at S142 during ciliogenesis. Further, we show that drebrin and hCDC14A regulate the recruitment of the actin organizer Arp2 to centrosomes. In addition, during ciliogenesis hCDC14A also regulates endocytosis and targeting of myosin Va vesicles to the basal body in a drebrin-independent manner, indicating that it impacts primary cilia formation in a multilayered manner.

摘要

CDC14A 编码一种保守的脯氨酸定向磷酸酶,该基因的突变与常染色体隐性严重至重度耳聋有关,原因是动纤毛缺陷。CDC14A 在其他生物体中的纤毛形成中也具有作用。然而,人类 CDC14A 如何影响纤毛形成仍不清楚。在这里,我们表明,编码磷酸酶失活版本 hCDC14A 的 RPE1 hCDC14A 细胞比野生型细胞具有更长的纤毛,而 hCDC14A 的过表达会减少纤毛形成。对有纤毛的 RPE1 细胞的磷酸化蛋白质组分析确定了调节纤毛长度的肌动蛋白相关和微管结合蛋白作为 hCDC14A 的底物,包括肌动蛋白结合蛋白 drebrin。事实上,我们发现 hCDC14A 可拮抗 CDK5 依赖性 drebrin 在纤毛发生过程中 S142 的磷酸化。此外,我们表明 drebrin 和 hCDC14A 调节肌动蛋白组织蛋白 Arp2 向中心体的募集。此外,在纤毛发生过程中,hCDC14A 还以 drebrin 独立的方式调节肌球蛋白 Va 囊泡的内吞作用和向基体的靶向,表明其以多层方式影响初级纤毛形成。

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