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机械力诱导αVβ3 整合素配体的混杂性。

Induction of ligand promiscuity of αVβ3 integrin by mechanical force.

机构信息

Zoological Institute, Cell and Neurobiology, Karlsruhe Institute of Technology (KIT), Karlsruhe 76131, Germany.

Department of Cell Physiology and Metabolism, University of Geneva, Geneva 1211, Switzerland.

出版信息

J Cell Sci. 2020 May 11;133(9):jcs242404. doi: 10.1242/jcs.242404.

Abstract

αVβ3 integrin can bind to multiple extracellular matrix proteins, including vitronectin (Vn) and fibronectin (Fn), which are often presented to cells in culture as homogenous substrates. However, in tissues, cells experience highly complex and changing environments. To better understand integrin ligand selection in such complex environments, we employed binary-choice substrates of Fn and Vn to dissect αVβ3 integrin-mediated binding to different ligands on the subcellular scale. Super-resolution imaging revealed that αVβ3 integrin preferred binding to Vn under various conditions. In contrast, binding to Fn required higher mechanical load on αVβ3 integrin. Integrin mutations, structural analysis and chemical inhibition experiments indicated that the degree of hybrid domain swing-out is relevant for the selection between Fn and Vn; only a force-mediated, full hybrid domain swing-out facilitated αVβ3-Fn binding. Thus, force-dependent conformational changes in αVβ3 integrin increased the diversity of available ligands for binding and therefore enhanced the ligand promiscuity of this integrin.This article has an associated First Person interview with the first author of the paper.

摘要

αVβ3 整合素可以结合多种细胞外基质蛋白,包括纤连蛋白 (Fn) 和 vitronectin (Vn),这些蛋白通常在培养的细胞中作为同质底物呈现。然而,在组织中,细胞经历着高度复杂和不断变化的环境。为了更好地理解整合素在这种复杂环境中的配体选择,我们采用 Fn 和 Vn 的二元选择底物,在亚细胞尺度上剖析 αVβ3 整合素介导的与不同配体的结合。超分辨率成像显示,在各种条件下,αVβ3 整合素优先与 Vn 结合。相比之下,与 Fn 的结合需要对 αVβ3 整合素施加更高的机械负荷。整合素突变、结构分析和化学抑制实验表明,杂交结构域摆动的程度与 Fn 和 Vn 的选择有关;只有在力介导下,完全的杂交结构域摆动才能促进 αVβ3-Fn 结合。因此,αVβ3 整合素中依赖于力的构象变化增加了可供结合的配体的多样性,从而增强了该整合素的配体混杂性。本文附有该论文第一作者的相关第一人称采访。

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