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层粘连蛋白γ1链中巢蛋白结合位点的定点诱变及结构解析

Site-directed mutagenesis and structural interpretation of the nidogen binding site of the laminin gamma1 chain.

作者信息

Pöschl E, Mayer U, Stetefeld J, Baumgartner R, Holak T A, Huber R, Timpl R

机构信息

Institut für experimentelle Medizin, Universität Erlangen, Germany.

出版信息

EMBO J. 1996 Oct 1;15(19):5154-9.

Abstract

A precise molecular map of the nidogen binding site of laminins was obtained by site-directed mutagenesis and structural analysis of the 56 residue LE module gamma1III4 of their gamma1 chain. This demonstrated the crucial importance of the sequence DPNAV (position 800-804) in the disulfide-bonded loop a, with major contributions made by all residues except P801. Different substitutions of these residues emphasized the essential role of the negative charge (D800) and carboxamide group (N802) as well as their spacings and hydrophobic contacts (V804) for interaction, and predict direct contacts of these three residues with a complementary binding region of nidogen. An inactivating A803-V substitution, however, may lead to a distorted loop structure. A lower but still significant contribution originates from the non-contiguous link/loop c sequence LKCIY (positions 815-819) which is spatially close to the loop a sequence. The link residues (L815 and K816) provide main chain hydrogen bonds to N806 and a side chain hydrogen bond to the V804 carbonyl and thus stabilize the conformation of loop a. The side chains of I818 and Y819 together with P842 from loop d form hydrophobic contacts that provide further stability but could possibly also participate in direct ligation. The nidogen binding epitope is therefore localized on a narrow ridge and has a length of approximately 17 angstroms. The data also indicate a strong conservation of the epitope in the laminin gamma1 chains of several invertebrates.

摘要

通过对层粘连蛋白γ1链56个残基的LE模块γ1III4进行定点诱变和结构分析,获得了层粘连蛋白中巢蛋白结合位点的精确分子图谱。这证明了序列DPNAV(第800 - 804位)在二硫键连接的环a中的关键重要性,除P801外的所有残基都有主要贡献。这些残基的不同取代强调了负电荷(D800)和羧酰胺基团(N802)以及它们的间距和疏水接触(V804)在相互作用中的重要作用,并预测这三个残基与巢蛋白的互补结合区域直接接触。然而,失活的A803 - V取代可能导致环结构扭曲。较低但仍然显著的贡献来自于与环a序列在空间上接近的非连续连接/环c序列LKCIY(第815 - 819位)。连接残基(L815和K816)为N806提供主链氢键,并为V804羰基提供侧链氢键,从而稳定环a的构象。I818和Y819的侧链与环d中的P842形成疏水接触,提供进一步的稳定性,但也可能参与直接连接。因此,巢蛋白结合表位位于一个狭窄的脊上,长度约为17埃。数据还表明该表位在几种无脊椎动物的层粘连蛋白γ1链中具有很强的保守性。

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