Lambrechts A, Kwiatkowski A V, Lanier L M, Bear J E, Vandekerckhove J, Ampe C, Gertler F B
Flanders Interuniversity Institute for Biotechnology, Department of Medical Protein Chemistry, Faculty of Medicine, Ghent University, Ledeganckstraat 35, 9000 Gent, Belgium.
J Biol Chem. 2000 Nov 17;275(46):36143-51. doi: 10.1074/jbc.M006274200.
Proteins of the Ena/VASP family are implicated in processes that require dynamic actin remodeling such as axon guidance and platelet activation. In this work, we explored some of the pathways that likely regulate actin dynamics in part via EVL (Ena/VASP-like protein). Two isoforms, EVL and EVL-I, were highly expressed in hematopoietic cells of thymus and spleen. In CD3-activated T-cells, EVL was found in F-actin-rich patches and at the distal tips of the microspikes that formed on the activated side of the T-cells. Like the other family members, EVL localized to focal adhesions and the leading edge of lamellipodia when expressed in fibroblasts. EVL was a substrate for the cAMP-dependent protein kinase, and this phosphorylation regulated several of the interactions between EVL and its ligands. Unlike VASP, EVL nucleated actin polymerization under physiological conditions, whereas phosphorylation of both EVL and VASP decreased their nucleating activity. EVL bound directly to the Abl, Lyn, and nSrc SH3 domains; the FE65 WW domain; and profilin, likely via its proline-rich core. Binding of Abl and nSrc SH3 domains, but not profilin or other SH3 domains, was abolished by cAMP-dependent protein kinase phosphorylation of EVL. We show strong cooperative binding of two profilin dimers on the polyproline sequence of EVL. Additionally, profilin competed with the SH3 domains for binding to partially overlapping binding sites. These data suggest that the function of EVL could be modulated in a complex manner by its interactions with multiple ligands and through phosphorylation by cyclic nucleotide dependent kinases.
Ena/VASP家族蛋白参与了诸如轴突导向和血小板活化等需要动态肌动蛋白重塑的过程。在这项研究中,我们探索了一些可能部分通过EVL(Ena/VASP样蛋白)调节肌动蛋白动力学的途径。两种异构体,EVL和EVL-I,在胸腺和脾脏的造血细胞中高度表达。在CD3激活的T细胞中,EVL存在于富含F-肌动蛋白的斑块以及T细胞激活侧形成的微刺的远端尖端。与其他家族成员一样,当在成纤维细胞中表达时,EVL定位于粘着斑和片状伪足的前沿。EVL是cAMP依赖性蛋白激酶的底物,这种磷酸化调节了EVL与其配体之间的几种相互作用。与VASP不同,EVL在生理条件下促进肌动蛋白聚合,而EVL和VASP的磷酸化均降低了它们的成核活性。EVL直接与Abl、Lyn和nSrc的SH3结构域;FE65的WW结构域;以及可能通过其富含脯氨酸的核心与丝切蛋白结合。EVL的cAMP依赖性蛋白激酶磷酸化消除了Abl和nSrc SH3结构域的结合,但不影响丝切蛋白或其他SH3结构域的结合。我们展示了两个丝切蛋白二聚体在EVL的多脯氨酸序列上的强协同结合。此外,丝切蛋白与SH3结构域竞争结合部分重叠的结合位点。这些数据表明,EVL的功能可能通过其与多种配体的相互作用以及环核苷酸依赖性激酶的磷酸化以复杂的方式受到调节。