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Dyrk1A 通过 threonine 磷酸化 N-WASP 负调控肌动蛋白细胞骨架。

Dyrk1A negatively regulates the actin cytoskeleton through threonine phosphorylation of N-WASP.

机构信息

Department of Systems Biology, College of Life Science and Biotechnology, Yonsei University, Seoul, Republic of Korea.

出版信息

J Cell Sci. 2012 Jan 1;125(Pt 1):67-80. doi: 10.1242/jcs.086124. Epub 2012 Jan 16.

Abstract

Neural Wiskott-Aldrich syndrome protein (N-WASP) is involved in tight regulation of actin polymerization and dynamics. N-WASP activity is regulated by intramolecular interaction, binding to small GTPases and tyrosine phosphorylation. Here, we report on a novel regulatory mechanism; we demonstrate that N-WASP interacts with dual-specificity tyrosine-phosphorylation-regulated kinase 1A (Dyrk1A). In vitro kinase assays indicate that Dyrk1A directly phosphorylates the GTPase-binding domain (GBD) of N-WASP at three sites (Thr196, Thr202 and Thr259). Phosphorylation of the GBD by Dyrk1A promotes the intramolecular interaction of the GBD and verprolin, cofilin and acidic (VCA) domains of N-WASP, and subsequently inhibits Arp2/3-complex-mediated actin polymerization. Overexpression of either Dyrk1A or a phospho-mimetic N-WASP mutant inhibits filopodia formation in COS-7 cells. By contrast, the knockdown of Dyrk1A expression or overexpression of a phospho-deficient N-WASP mutant promotes filopodia formation. Furthermore, the overexpression of a phospho-mimetic N-WASP mutant significantly inhibits dendritic spine formation in primary hippocampal neurons. These findings suggest that Dyrk1A negatively regulates actin filament assembly by phosphorylating N-WASP, which ultimately promotes the intramolecular interaction of its GBD and VCA domains. These results provide insight on the mechanisms contributing to diverse actin-based cellular processes such as cell migration, endocytosis and neuronal differentiation.

摘要

神经 Wiskott-Aldrich 综合征蛋白 (N-WASP) 参与肌动蛋白聚合和动力学的紧密调节。N-WASP 的活性受分子内相互作用、与小 GTPases 的结合和酪氨酸磷酸化调节。在这里,我们报告了一种新的调节机制;我们证明 N-WASP 与双特异性酪氨酸磷酸化调节激酶 1A (Dyrk1A) 相互作用。体外激酶测定表明,Dyrk1A 直接在三个位点 (Thr196、Thr202 和 Thr259) 磷酸化 N-WASP 的 GTPase 结合域 (GBD)。Dyrk1A 对 GBD 的磷酸化促进了 N-WASP 的 GBD 与 verprolin、cofilin 和酸性 (VCA) 结构域的分子内相互作用,随后抑制了 Arp2/3 复合物介导的肌动蛋白聚合。Dyrk1A 或磷酸模拟突变体 N-WASP 的过表达抑制 COS-7 细胞中丝状伪足的形成。相比之下,Dyrk1A 表达的敲低或磷酸缺陷突变体 N-WASP 的过表达促进丝状伪足的形成。此外,磷酸模拟突变体 N-WASP 的过表达显著抑制原代海马神经元树突棘的形成。这些发现表明,Dyrk1A 通过磷酸化 N-WASP 负调控肌动蛋白丝组装,从而促进其 GBD 和 VCA 结构域的分子内相互作用。这些结果为不同的基于肌动蛋白的细胞过程(如细胞迁移、内吞作用和神经元分化)的机制提供了新的见解。

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