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紧密连接蛋白闭合蛋白和黏附连接蛋白α-连环蛋白与紧密连接蛋白1(ZO-1)具有共同的相互作用机制。

The tight junction protein occludin and the adherens junction protein alpha-catenin share a common interaction mechanism with ZO-1.

作者信息

Müller Sebastian L, Portwich Michael, Schmidt Anke, Utepbergenov Darkhan I, Huber Otmar, Blasig Ingolf E, Krause Gerd

机构信息

Forschungsinstitut für Molekulare Pharmakologie, 13125 Berlin, Charité-Campus Mitte, 10117 Berlin, Germany, and Charité-Campus Benjamin Franklin, 12203 Berlin, Germany.

出版信息

J Biol Chem. 2005 Feb 4;280(5):3747-56. doi: 10.1074/jbc.M411365200. Epub 2004 Nov 16.

Abstract

The exact sites, structures, and molecular mechanisms of interaction between junction organizing zona occludence protein 1 (ZO-1) and the tight junction protein occludin or the adherens junction protein alpha-catenin are unknown. Binding studies by surface plasmon resonance spectroscopy and peptide mapping combined with comparative modeling utilizing crystal structures led for the first time to a molecular model revealing the binding of both occludin and alpha-catenin to the same binding site in ZO-1. Our data support a concept that ZO-1 successively associates with alpha-catenin at the adherens junction and occludin at the tight junction. Strong spatial evidence indicates that the occludin C-terminal coiled-coil domain dimerizes and interacts finally as a four-helix bundle with the identified structural motifs in ZO-1. The helix bundle of occludin406-521 and alpha-catenin509-906 interacts with the hinge region (ZO-1591-632 and ZO-1591-622, respectively) and with (ZO-1726-754 and ZO-1756-781) in the GuK domain of ZO-1 containing coiled-coil and alpha-helical structures, respectively. The selectivity of both protein-protein interactions is defined by complementary shapes and charges between the participating epitopes. In conclusion, a common molecular mechanism of forming an intermolecular helical bundle between the hinge region/GuK domain of ZO-1 and alpha-catenin and occludin is identified as a general molecular principle organizing the association of ZO-1 at adherens and tight junctions.

摘要

连接组织封闭蛋白1(ZO-1)与紧密连接蛋白闭合蛋白或黏附连接蛋白α-连环蛋白之间相互作用的确切位点、结构及分子机制尚不清楚。通过表面等离子体共振光谱进行的结合研究以及肽图谱分析,并结合利用晶体结构的比较建模,首次得出了一个分子模型,揭示了闭合蛋白和α-连环蛋白与ZO-1中同一结合位点的结合情况。我们的数据支持这样一种概念,即ZO-1先后在黏附连接处与α-连环蛋白结合,在紧密连接处与闭合蛋白结合。有力的空间证据表明,闭合蛋白C端卷曲螺旋结构域形成二聚体,并最终作为四螺旋束与ZO-1中已确定的结构基序相互作用。闭合蛋白406 - 521和α-连环蛋白509 - 906的螺旋束分别与ZO-1的铰链区(分别为ZO-1591 - 632和ZO-1591 - 622)以及ZO-1含卷曲螺旋和α-螺旋结构的GuK结构域中的(ZO-1726 - 754和ZO-1756 - 781)相互作用。两种蛋白质-蛋白质相互作用的选择性由参与表位之间互补的形状和电荷决定。总之,在ZO-1的铰链区/GuK结构域与α-连环蛋白和闭合蛋白之间形成分子间螺旋束的共同分子机制被确定为组织ZO-1在黏附连接和紧密连接中缔合的一般分子原理。

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