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磷酸化和肌动蛋白结合基序而非富含脯氨酸的中央区域在细胞迁移过程中对Ena/血管舒张刺激磷蛋白(VASP)功能起关键作用。

Critical roles of phosphorylation and actin binding motifs, but not the central proline-rich region, for Ena/vasodilator-stimulated phosphoprotein (VASP) function during cell migration.

作者信息

Loureiro Joseph J, Rubinson Douglas A, Bear James E, Baltus Gretchen A, Kwiatkowski Adam V, Gertler Frank B

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139-4307, USA.

出版信息

Mol Biol Cell. 2002 Jul;13(7):2533-46. doi: 10.1091/mbc.e01-10-0102.

Abstract

The Ena/vasodilator-stimulated phosphoprotein (VASP) protein family is implicated in the regulation of a number of actin-based cellular processes, including lamellipodial protrusion necessary for whole cell translocation. A growing body of evidence derived largely from in vitro biochemical experiments using purified proteins, cell-free extracts, and pathogen motility has begun to suggest various mechanistic roles for Ena/VASP proteins in the control of actin dynamics. Using complementation of phenotypes in Ena/VASP-deficient cells and overexpression in normal fibroblasts, we have assayed the function of a panel of mutants in one member of this family, Mena, by mutating highly conserved sequence elements found in this protein family. Surprisingly, deletion of sites required for binding of the actin monomer-binding protein profilin, a known ligand of Ena/VASP proteins, has no effect on the ability of Mena to regulate random cell motility. Our analysis revealed two features essential for Ena/VASP function in cell movement, cyclic nucleotide-dependent kinase phosphorylation sites and an F-actin binding motif. Interestingly, expression of the C-terminal EVH2 domain alone is sufficient to complement loss of Ena/VASP function in random cell motility.

摘要

Ena/血管舒张剂刺激磷蛋白(VASP)蛋白家族参与调控许多基于肌动蛋白的细胞过程,包括全细胞迁移所必需的片状伪足突出。越来越多的证据主要来自使用纯化蛋白、无细胞提取物和病原体运动性的体外生化实验,这些证据开始表明Ena/VASP蛋白在控制肌动蛋白动力学方面具有多种机制作用。通过对Ena/VASP缺陷细胞中的表型进行互补以及在正常成纤维细胞中过表达,我们通过突变该蛋白家族一个成员Mena中发现的高度保守序列元件,分析了一组突变体的功能。令人惊讶的是,肌动蛋白单体结合蛋白抑制蛋白(Ena/VASP蛋白的已知配体)结合所需位点的缺失对Mena调节随机细胞运动的能力没有影响。我们的分析揭示了Ena/VASP在细胞运动中发挥功能所必需的两个特征,即环核苷酸依赖性激酶磷酸化位点和一个F-肌动蛋白结合基序。有趣的是,单独表达C末端EVH2结构域就足以弥补Ena/VASP在随机细胞运动中的功能丧失。

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