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整合素A结构域(I结构域)的两种构象:一种激活途径?

Two conformations of the integrin A-domain (I-domain): a pathway for activation?

作者信息

Lee J O, Bankston L A, Arnaout M A, Liddington R C

机构信息

Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Structure. 1995 Dec 15;3(12):1333-40. doi: 10.1016/s0969-2126(01)00271-4.

Abstract

BACKGROUND

Integrins are plasma membrane proteins that mediate adhesion to other cells and to components of the extracellular matrix. Most integrins are constitutively inactive in resting cells, but are rapidly and reversibly activated in response to agonists, leading to highly regulated cell adhesion. This activation is associated with conformational changes in their extracellular portions, but the nature of the structural changes that lead to a change in adhesiveness is not understood. The interactions of several integrins with their extracellular ligands are mediated by an A-type domain (generally called the I-domain in integrins). Binding of the I-domain to protein ligands is dependent on divalent cations. We have described previously the structure of the I-domain from complement receptor 3 with bound Mg2+, in which the glutamate side chain from a second I-domain completes the octahedral coordination sphere of the metal, acting as a ligand mimetic.

RESULTS

We now describe a new crystal form of the I-domain with bound Mn2+, in which water completes the metal coordination sphere and there is no equivalent of the glutamate ligand. Comparison of the two crystal forms reveals a change in metal coordination which is linked to a large (10 A) shift of the C-terminal helix and the burial of two phenylalanine residues into the hydrophobic core of the Mn2+ form. These structural changes, analogous to those seen in the signal-transducing G-proteins, alter the electrophilicity of the metal, reducing its ability to bind ligand-associated acidic residues, and dramatically alter the surface of the protein implicated in binding ligand.

CONCLUSIONS

Our observations provide the first atomic resolution view of conformational changes in an integrin domain, and suggest how these changes are linked to a change in integrin adhesiveness. We propose that the Mg2+ form represents the conformation of the domain in the active state and the Mn2+ form the conformation in the inactive state of the integrin.

摘要

背景

整合素是介导细胞与其他细胞以及细胞外基质成分黏附的质膜蛋白。大多数整合素在静息细胞中处于组成性失活状态,但在激动剂作用下会迅速且可逆地激活,从而导致高度调控的细胞黏附。这种激活与它们细胞外部分的构象变化相关,但导致黏附性改变的结构变化的本质尚不清楚。几种整合素与其细胞外配体的相互作用由一个A型结构域介导(在整合素中通常称为I结构域)。I结构域与蛋白质配体的结合依赖于二价阳离子。我们之前描述了与结合了Mg2+的补体受体3的I结构域的结构,其中来自第二个I结构域的谷氨酸侧链完成了金属的八面体配位球,起到配体模拟物的作用。

结果

我们现在描述了与结合了Mn2+的I结构域的一种新晶体形式,其中水完成了金属配位球,并且没有相当于谷氨酸配体的结构。两种晶体形式的比较揭示了金属配位的变化,这与C末端螺旋的大幅(10埃)移动以及两个苯丙氨酸残基埋入Mn2+形式的疏水核心有关。这些结构变化类似于在信号转导G蛋白中看到的变化,改变了金属的亲电性,降低了其结合配体相关酸性残基的能力,并显著改变了蛋白质中与结合配体有关的表面。

结论

我们的观察提供了整合素结构域构象变化的首个原子分辨率视图,并表明这些变化如何与整合素黏附性的变化相关。我们提出Mg2+形式代表整合素活性状态下结构域的构象,而Mn2+形式代表其非活性状态下的构象。

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