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二价阳离子对α4整合素与整合素配体血管细胞黏附分子-1和黏膜地址素细胞黏附分子-1的亲和力及选择性的影响:整合素α4β1的Ca2+激活赋予其独特的配体特异性。

Effect of divalent cations on the affinity and selectivity of alpha4 integrins towards the integrin ligands vascular cell adhesion molecule-1 and mucosal addressin cell adhesion molecule-1: Ca2+ activation of integrin alpha4beta1 confers a distinct ligand specificity.

作者信息

Day Eric S, Osborn Laurelee, Whitty Adrian

机构信息

BIOGEN Inc., Cambridge, MA 02142, USA.

出版信息

Cell Commun Adhes. 2002 Jul-Aug;9(4):205-19. doi: 10.1080/15419060216014.

Abstract

A microtiter plate assay measuring the binding of cells expressing integrins alpha4beta1 or alpha4beta7 to VCAM-1 and MAdCAM-1, expressed as Ig fusion proteins, was used to explore the interplay between the variables of integrin beta-chain, identity and density of ligand, and identity and concentration of activating cations. Both Mn2+ and Mg2+ supported binding of either integrin to either ligand. Ca2+ supported only the binding of alpha4beta1 to VCAM-Ig. Cation concentrations required for half-maximal binding (EC50) ranged from 0.8-280 microM for Mn2+ and 0.8-30 mM for Mg2+, being thus 2-3 logs lower for Mn2+ compared to Mg2+ independent of ligand. EC50 values for binding of alpha4beta1 to VCAM-Ig were 30-45-fold lower compared to MAdCAM-Ig, while alpha4beta7 showed an opposite 3-15-fold selectivity for MAdCAM-Ig over VCAM-Ig. The density of ligand required for adhesion via alpha4beta1 was markedly lower with Mn2+ versus Mg2+, and with VCAM-Ig versus MAdCAM-Ig. These results were interpreted in terms of a coupled equilibrium model, in which binding of activating metal ions and of integrin ligands each stabilizes activated integrin. We conclude that Mn2+ and Mg2+ bind to common regulatory sites with different affinities, producing similar activated states of the integrin. The resulting activated alpha4beta1 binds more strongly to VCAM-Ig versus MAdCAM-Ig by 30-45-fold, while similarly activated alpha4beta7 binds more strongly to MAdCAM-Ig versus VCAM-Ig by 3-15-fold. Inhibition studies showed that Ca2+ also binds to regulatory sites on both integrins. However, the Ca2+-activated state of alpha4beta1 is distinct from that achieved by Mn2+ and Mg2+, possessing increased selectivity for binding to VCAM-1 versus MAdCAM-1.

摘要

采用微量滴定板分析法检测表达整合素α4β1或α4β7的细胞与作为Ig融合蛋白表达的血管细胞黏附分子-1(VCAM-1)和黏膜地址素细胞黏附分子-1(MAdCAM-1)的结合情况,以探究整合素β链变量、配体的同一性和密度以及激活阳离子的同一性和浓度之间的相互作用。Mn2+和Mg2+均支持任一整合素与任一配体的结合。Ca2+仅支持α4β1与VCAM-Ig的结合。半数最大结合所需的阳离子浓度(EC50),Mn2+为0.8 - 280μM,Mg2+为0.8 - 30 mM,因此与Mg2+相比,Mn2+的浓度低2 - 3个对数级,且与配体无关。α4β1与VCAM-Ig结合的EC50值比与MAdCAM-Ig结合时低30 - 45倍,而α4β7对MAdCAM-Ig与VCAM-Ig的选择性则相反,为3 - 15倍。通过α4β1实现黏附所需的配体密度,与Mg2+相比,Mn2+时明显更低,与MAdCAM-Ig相比,VCAM-Ig时明显更低。这些结果根据耦合平衡模型进行解释,其中激活金属离子和整合素配体的结合各自稳定激活的整合素。我们得出结论,Mn2+和Mg2+以不同亲和力结合到共同的调节位点,产生相似的整合素激活状态。由此产生的激活的α4β1与VCAM-Ig的结合比与MAdCAM-Ig的结合强30 - 45倍,而同样激活的α4β7与MAdCAM-Ig的结合比与VCAM-Ig的结合强3 - 15倍。抑制研究表明,Ca2+也结合到两种整合素的调节位点。然而,α4β1的Ca2+激活状态与Mn2+和Mg2+实现的状态不同,对与VCAM-1的结合比对与MAdCAM-1的结合具有更高的选择性。

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