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与Fc结合的人III型Fcγ受体的结构

The structure of a human type III Fcgamma receptor in complex with Fc.

作者信息

Radaev S, Motyka S, Fridman W H, Sautes-Fridman C, Sun P D

机构信息

Structural Biology Section, Laboratory of Immunogenetics, NIAID, National Institutes of Health, Rockville, Maryland 20852, USA.

出版信息

J Biol Chem. 2001 May 11;276(19):16469-77. doi: 10.1074/jbc.M100350200. Epub 2001 Jan 31.

Abstract

Fcgamma receptors mediate antibody-dependent inflammatory responses and cytotoxicity as well as certain autoimmune dysfunctions. Here we report the crystal structure of a human Fc receptor (FcgammaRIIIB) in complex with an Fc fragment of human IgG1 determined from orthorhombic and hexagonal crystal forms at 3.0- and 3.5-A resolution, respectively. The refined structures from the two crystal forms are nearly identical with no significant discrepancies between the coordinates. Regions of the C-terminal domain of FcgammaRIII, including the BC, C'E, FG loops, and the C' beta-strand, bind asymmetrically to the lower hinge region, residues Leu(234)-Pro(238), of both Fc chains creating a 1:1 receptor-ligand stoichiometry. Minor conformational changes are observed in both the receptor and Fc upon complex formation. Hydrophobic residues, hydrogen bonds, and salt bridges are distributed throughout the receptor.Fc interface. Sequence comparisons of the receptor-ligand interface residues suggest a conserved binding mode common to all members of immunoglobulin-like Fc receptors. Structural comparison between FcgammaRIII.Fc and FcepsilonRI.Fc complexes highlights the differences in ligand recognition between the high and low affinity receptors. Although not in direct contact with the receptor, the carbohydrate attached to the conserved glycosylation residue Asn(297) on Fc may stabilize the conformation of the receptor-binding epitope on Fc. An antibody-FcgammaRIII model suggests two possible ligand-induced receptor aggregations.

摘要

Fcγ受体介导抗体依赖性炎症反应、细胞毒性以及某些自身免疫功能障碍。在此,我们报告了人Fc受体(FcγRIIIB)与人类IgG1的Fc片段形成复合物的晶体结构,该结构分别从正交晶系和六方晶系晶体形式中确定,分辨率分别为3.0埃和3.5埃。两种晶体形式的精制结构几乎相同,坐标之间没有显著差异。FcγRIII C末端结构域的区域,包括BC、C'E、FG环和C'β链,与两条Fc链的下铰链区残基Leu(234)-Pro(238)不对称结合,形成1:1的受体-配体化学计量比。在复合物形成时,受体和Fc中均观察到微小的构象变化。疏水残基、氢键和盐桥分布在整个受体-Fc界面。受体-配体界面残基的序列比较表明,免疫球蛋白样Fc受体的所有成员具有共同的保守结合模式。FcγRIII.Fc和FcepsilonRI.Fc复合物之间的结构比较突出了高亲和力和低亲和力受体在配体识别上的差异。虽然Fc上与保守糖基化残基Asn(297)相连的碳水化合物不与受体直接接触,但它可能稳定Fc上受体结合表位的构象。一个抗体-FcγRIII模型表明了两种可能的配体诱导的受体聚集。

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