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通过α4β1整合素的亲和力和构象伸展对细胞黏附的调节

Regulation of cell adhesion by affinity and conformational unbending of alpha4beta1 integrin.

作者信息

Chigaev Alexandre, Waller Anna, Zwartz Gordon J, Buranda Tione, Sklar Larry A

机构信息

Department of Pathology and Cancer Center, University of New Mexico Health Sciences Center, Albuquerque, NM 87131, USA.

出版信息

J Immunol. 2007 Jun 1;178(11):6828-39. doi: 10.4049/jimmunol.178.11.6828.

Abstract

Rapid activation of integrins in response to chemokine-induced signaling serves as a basis for leukocyte arrest on inflamed endothelium. Current models of integrin activation include increased affinity for ligand, molecular extension, and others. In this study, using real-time fluorescence resonance energy transfer to assess alpha(4)beta(1) integrin conformational unbending and fluorescent ligand binding to assess affinity, we report at least four receptor states with independent regulation of affinity and unbending. Moreover, kinetic analysis of chemokine-induced integrin conformational unbending and ligand-binding affinity revealed conditions under which the affinity change was transient whereas the unbending was sustained. In a VLA-4/VCAM-1-specific myeloid cell adhesion model system, changes in the affinity of the VLA-4-binding pocket were reflected in rapid cell aggregation and disaggregation. However, the initial rate of cell aggregation increased 9-fold upon activation, of which only 2.5-fold was attributable to the increased affinity of the binding pocket. These data show that independent regulation of affinity and conformational unbending represents a novel and fundamental mechanism for regulation of integrin-dependent adhesion in which the increased affinity appears to account primarily for the increasing lifetime of the alpha(4)beta(1) integrin/VCAM-1 bond, whereas the unbending accounts for the increased capture efficiency.

摘要

趋化因子诱导的信号传导引发整合素的快速激活,这是白细胞在内皮炎症部位停滞的基础。目前的整合素激活模型包括对配体亲和力增加、分子伸展等。在本研究中,我们使用实时荧光共振能量转移来评估α(4)β(1)整合素的构象伸直,并使用荧光配体结合来评估亲和力,我们报告了至少四种受体状态,其亲和力和伸直具有独立调节。此外,对趋化因子诱导的整合素构象伸直和配体结合亲和力的动力学分析揭示了亲和力变化是短暂的而伸直是持续的条件。在VLA-4/VCAM-1特异性髓样细胞粘附模型系统中,VLA-4结合口袋亲和力的变化反映在细胞的快速聚集和解聚中。然而,激活后细胞聚集的初始速率增加了9倍,其中只有2.5倍归因于结合口袋亲和力的增加。这些数据表明,亲和力和构象伸直的独立调节代表了一种新的基本机制,用于调节整合素依赖性粘附,其中亲和力增加似乎主要解释了α(4)β(1)整合素/VCAM-1键寿命的延长,而伸直则解释了捕获效率的提高。

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