Department of Biology, Massachusetts Institute of Technology, Cambridge, United States.
Department of Cellular and Molecular Medicine, University of Arizona Cancer Center, University of Arizona, Tucson, United States.
Elife. 2021 Dec 2;10:e70601. doi: 10.7554/eLife.70601.
Metazoan proteomes contain many paralogous proteins that have evolved distinct functions. The Ena/VASP family of actin regulators consists of three members that share an EVH1 interaction domain with a 100 % conserved binding site. A proteome-wide screen revealed photoreceptor cilium actin regulator (PCARE) as a high-affinity ligand for ENAH EVH1. Here, we report the surprising observation that PCARE is ~100-fold specific for ENAH over paralogs VASP and EVL and can selectively bind ENAH and inhibit ENAH-dependent adhesion in cells. Specificity arises from a mechanism whereby PCARE stabilizes a conformation of the ENAH EVH1 domain that is inaccessible to family members VASP and EVL. Structure-based modeling rapidly identified seven residues distributed throughout EVL that are sufficient to differentiate binding by ENAH vs. EVL. By exploiting the ENAH-specific conformation, we rationally designed the tightest and most selective ENAH binder to date. Our work uncovers a conformational mechanism of interaction specificity that distinguishes highly similar paralogs and establishes tools for dissecting specific Ena/VASP functions in processes including cancer cell invasion.
后生动物蛋白质组包含许多进化出不同功能的同源蛋白。肌动蛋白调节剂 Ena/VASP 家族由三个成员组成,它们都具有 EVH1 相互作用域,且结合位点具有 100%的保守性。全蛋白质组筛选发现光感受器纤毛肌动蛋白调节剂(PCARE)是 ENAH EVH1 的高亲和力配体。在这里,我们报告了一个令人惊讶的观察结果,即 PCARE 对 ENAH 的特异性约为同源蛋白 VASP 和 EVL 的 100 倍,并且可以选择性地结合 ENAH 并抑制细胞中 ENAH 依赖性黏附。特异性源于一种机制,即 PCARE 稳定了 ENAH EVH1 结构域的构象,该构象对家族成员 VASP 和 EVL 不可用。基于结构的建模迅速确定了分布在 EVL 中的七个残基,这些残基足以区分 ENAH 和 EVL 的结合。通过利用 ENAH 特异性构象,我们合理设计了迄今为止最紧密和最具选择性的 ENAH 结合物。我们的工作揭示了一种区分高度相似同源蛋白的相互作用特异性构象机制,并建立了用于剖析包括癌细胞侵袭在内的过程中特定 Ena/VASP 功能的工具。