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βI 结构域中心与 α1/α7 螺旋之间的疏水接触对于整合素 α4β7 的低亲和力状态至关重要。

The hydrophobic contacts between the center of the βI domain and the α1/α7 helices are crucial for the low-affinity state of integrin α4 β7.

机构信息

State Key Laboratory of Cell Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, China.

出版信息

FEBS J. 2014 Jul;281(13):2915-26. doi: 10.1111/febs.12829. Epub 2014 May 21.

Abstract

Integrin α4 β7 mediates both rolling and firm adhesion of lymphocytes by modulating its affinity to the ligand: mucosal addressin cell adhesion molecule-1 (MAdCAM-1). Integrin activation is associated with allosteric reshaping in the β subunit I (βI) domain. A prominently conformational change comprises displacement of the α1 and α7 helices in the βI domain, suggesting that the location of these helices is important for the change in integrin affinity. In the present study, we report that the hydrophobic contacts between the center of the β7 I domain and the α1/α7 helices play critical roles in keeping α4 β7 in a low-affinity state. Using molecular dynamics simulation, we identified nine hydrophobic residues that might be involved in the critical hydrophobic contacts maintaining integrin in a low-affinity state. Integrin β7 I domain exhibited a lower binding free energy for ligand after disrupting these hydrophobic contacts by substituting the hydrophobic residues with Ala. Moreover, these α4 β7 mutants not only showed high-affinity binding to soluble MAdCAM-1, but also demonstrated firm cell adhesion to immobilized MAdCAM-1 in shear flow and enhanced the strength of the α4 β7 -MAdCAM-1 interaction. Disruption of the hydrophobic contacts also induced the active conformation of α4 β7 . Thus, the findings obtained in the present study reveal an important structural basis for the low-affinity state of integrin.

摘要

整合素 α4β7 通过调节其与配体(黏膜地址素细胞黏附分子-1(MAdCAM-1))的亲和力来介导淋巴细胞的滚动和牢固黏附。整合素的激活与β亚基 I(βI)结构域中的变构重塑有关。一个显著的构象变化包括βI 结构域中α1 和α7 螺旋的位移,这表明这些螺旋的位置对于整合素亲和力的变化很重要。在本研究中,我们报告说,β7 I 结构域中心与α1/α7 螺旋之间的疏水接触对于将α4β7 保持在低亲和力状态起着关键作用。通过分子动力学模拟,我们确定了九个可能参与维持整合素处于低亲和力状态的关键疏水接触的疏水残基。整合素β7 I 结构域在破坏这些疏水接触后,与配体的结合自由能降低。此外,这些α4β7 突变体不仅表现出与可溶性 MAdCAM-1 的高亲和力结合,而且在剪切流中牢固地黏附于固定化的 MAdCAM-1,并增强了α4β7-MAdCAM-1 相互作用的强度。疏水接触的破坏也诱导了α4β7 的活性构象。因此,本研究的结果揭示了整合素低亲和力状态的一个重要结构基础。

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