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深入了解 Mena 的 EVH1 结构域的相互作用景观。

Insights into the Interaction Landscape of the EVH1 Domain of Mena.

机构信息

Department of Biochemistry, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, United States.

出版信息

Biochemistry. 2024 Sep 3;63(17):2183-2195. doi: 10.1021/acs.biochem.4c00331. Epub 2024 Aug 13.

Abstract

The Enabled/VASP homology 1 (EVH1) domain is a small module that interacts with proline-rich stretches in its ligands and is found in various signaling and scaffolding proteins. Mena, the mammalian homologue of Ena, is involved in diverse actin-associated events, such as membrane dynamics, bacterial motility, and tumor intravasation and extravasation. Two-dimensional (2D) H-N HSQC NMR was used to study Mena EVH1 binding properties, defining the amino acids involved in ligand recognition for the physiological ligands ActA and PCARE, and a synthetic polyproline-inspired small molecule (hereafter inhibitor ). Chemical shift perturbations indicated that proline-rich segments bind in the conserved EVH1 hydrophobic cleft. The PCARE-derived peptide elicited more perturbations compared to the ActA-derived peptide, consistent with a previous report of a structural alteration in the solvent-exposed β7-β8 loop. Unexpectedly, EVH1 and the proline-rich segment of PTP1B did not exhibit NMR chemical shift perturbations; however, the high-resolution crystal structure implicated the conserved EVH1 hydrophobic cleft in ligand recognition. Intrinsic steady-state fluorescence and fluorescence polarization assays indicate that residues outside the proline-rich segment enhance the ligand affinity for EVH1 ( = 3-8 μM). Inhibitor displayed tighter binding ( ∼ 0.3 μM) and occupies the same EVH1 cleft as physiological ligands. These studies revealed that the EVH1 domain enhances ligand affinity through recognition of residues flanking the proline-rich segments. Additionally, a synthetic inhibitor binds more tightly to the EVH1 domain than natural ligands, occupying the same hydrophobic cleft.

摘要

Enabled/VASP 同源结构域 1(EVH1)结构域是一个小模块,可与配体中的富含脯氨酸的片段相互作用,存在于各种信号转导和支架蛋白中。Mena 是 Ena 的哺乳动物同源物,参与各种与肌动蛋白相关的事件,如膜动力学、细菌运动以及肿瘤的血管内渗透和外渗。二维(2D)H-N HSQC NMR 用于研究 Mena EVH1 结合特性,定义了生理配体 ActA 和 PCARE 的配体识别涉及的氨基酸,以及一种合成的富含脯氨酸的小分子(以下简称抑制剂)。化学位移扰动表明富含脯氨酸的片段结合在保守的 EVH1 疏水性裂缝中。与源自 ActA 的肽相比,源自 PCARE 的肽引起了更多的扰动,这与先前报道的溶剂暴露的β7-β8 环中的结构改变一致。出乎意料的是,EVH1 和 PTP1B 的富含脯氨酸片段没有表现出 NMR 化学位移扰动;然而,高分辨率晶体结构暗示了保守的 EVH1 疏水性裂缝在配体识别中的作用。本征稳态荧光和荧光偏振测定表明,富含脯氨酸片段之外的残基增强了 EVH1 对配体的亲和力(=3-8 μM)。抑制剂显示出更紧密的结合(∼0.3 μM),并占据与生理配体相同的 EVH1 裂缝。这些研究表明,EVH1 结构域通过识别富含脯氨酸片段侧翼的残基来增强配体亲和力。此外,合成抑制剂比天然配体更紧密地结合 EVH1 结构域,占据相同的疏水性裂缝。

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