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蛋白质-蛋白质识别:免疫球蛋白及其他类夹心蛋白中结构域与界面核心的并置

Protein--protein recognition: juxtaposition of domain and interface cores in immunoglobulins and other sandwich-like proteins.

作者信息

Potapov Vladimir, Sobolev Vladimir, Edelman Marvin, Kister Alexander, Gelfand Israel

机构信息

Department of Plant Sciences, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

J Mol Biol. 2004 Sep 10;342(2):665-79. doi: 10.1016/j.jmb.2004.06.072.

Abstract

Structural analysis of a non-redundant data set of 47 immunoglobulin (Ig) proteins was carried out using a combination of criteria: atom--atom contact compatibility, position occupancy rate, conservation of residue type and positional conservation in 3D space. Our analysis shows that roughly half of the interface positions between the light and heavy chains are specific to individual structures while the other half are conserved across the database. The tendency for conservation of a primary subset of positions holds true for the intra-domain faces as well. These subsets, with an average of 12 conserved positions and a contact surface of 630 A(2), delineate the inter- and intra-domain core, a refined instrument with a reduced target for analysis of sheet--sheet interactions in sandwich-like proteins. Employing this instrument, we find that a majority of Ig interface core positions are adjoined in sequence to domain core positions. This was derived independent of geometric considerations, however beta-sheet side-chain geometry clearly dictates it. The geometric wedding of the domain and interface cores supports the concept of a rigid-like substructure on the protein surface involved in complex formation and indicates a close relationship between surface determinants and those involved in protein folding of Ig domains. The definitions developed for the Ig interface and domain cores proved satisfactory to extract first-approximation cores for a group of 24 non-Ig sandwich-like proteins, treated as individual structures due to their diverse strand topologies. We show that the same rule of positional connectivity between the rigid domain core and interface core extends generally to sandwich-like proteins interacting in a sheet--sheet fashion. The non-Ig structures were used as templates to analyze sandwich-like interfaces of unresolved homologous proteins using a database merging structure and sequence conservation.

摘要

利用原子-原子接触兼容性、位置占有率、残基类型保守性以及三维空间中的位置保守性等标准,对47种免疫球蛋白(Ig)蛋白质的非冗余数据集进行了结构分析。我们的分析表明,轻链和重链之间大约一半的界面位置是各个结构所特有的,而另一半在整个数据库中是保守的。位置主要子集的保守趋势在结构域内表面也成立。这些子集平均有12个保守位置,接触面积为630 Ų,勾勒出结构域间和结构域内的核心,这是一种经过优化的工具,可减少对三明治样蛋白质中层间相互作用分析的目标。使用该工具,我们发现大多数Ig界面核心位置在序列上与结构域核心位置相邻。这一发现与几何因素无关,然而β-折叠侧链几何结构显然决定了这一点。结构域核心和界面核心的几何结合支持了蛋白质表面参与复合物形成的类刚性亚结构的概念,并表明表面决定因素与Ig结构域蛋白质折叠中涉及的因素之间存在密切关系。为Ig界面和结构域核心开发的定义被证明足以提取一组24种非Ig三明治样蛋白质的初步近似核心,由于它们不同的链拓扑结构,这些蛋白质被视为单个结构。我们表明,刚性结构域核心和界面核心之间相同的位置连接规则通常也适用于以层-层方式相互作用的三明治样蛋白质。非Ig结构被用作模板,通过合并结构和序列保守性的数据库来分析未解析同源蛋白质的三明治样界面。

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