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人类免疫球蛋白上gp120超抗原结合位点的结构基础。

Structural basis of the gp120 superantigen-binding site on human immunoglobulins.

作者信息

Karray S, Juompan L, Maroun R C, Isenberg D, Silverman G J, Zouali M

机构信息

Département d'Immunologie, Institut Pasteur, Paris, France.

出版信息

J Immunol. 1998 Dec 15;161(12):6681-8.

PMID:9862697
Abstract

B cell superantigens (SAg) interact with normal human nonimmune Igs (Igs), independently of the light chain isotype, and activate a large proportion of the B cell repertoire. Recently, the major envelope protein of HIV-1, gp120, was found to exhibit SAg-like properties for B cells with potential pathologic consequences for the infected host. This unconventional mode of interaction contrasts with its binding to immunization-induced Abs, which requires the tertiary structure of the heavy and light chain variable regions. In this report, we have examined the structural basis of the interaction between human Igs and gp120. We found that gp120 binding is restricted to Igs from the V(H)3 gene family and that the two V(H) genes 3-23 and 3-30, known to be overutilized during all stages of B cell development, frequently impart gp120 binding. We also provide evidence that the viral gp120 SAg can interact with only a subset of the human V(H)3+ Igs that can convey binding to the prototypic bacterial B cell SAg protein A from Staphylococcus aureus. Finally, we have identified amino acid positions present primarily in the first and third framework regions of the Ig heavy chain variable region, outside the conventional hypervariable loops, which correlate with gp120 binding. In a three-dimensional sequence-homology model, these residues partially overlap with the predicted SAg protein A binding site for V(H)3+ Igs.

摘要

B细胞超抗原(SAg)可与正常人的非免疫球蛋白(Ig)相互作用,且不依赖于轻链同种型,并激活大部分B细胞库。最近,人们发现HIV-1的主要包膜蛋白gp120对B细胞具有类似SAg的特性,这可能会给受感染宿主带来病理后果。这种非常规的相互作用模式与其与免疫诱导抗体的结合形成对比,后者需要重链和轻链可变区的三级结构。在本报告中,我们研究了人Ig与gp120之间相互作用的结构基础。我们发现,gp120的结合仅限于来自V(H)3基因家族的Ig,并且已知在B细胞发育的所有阶段过度使用的两个V(H)基因3-23和3-30常常赋予gp120结合能力。我们还提供证据表明,病毒gp120 SAg只能与一部分人V(H)3+ Ig相互作用,这些Ig能够介导与金黄色葡萄球菌的原型细菌B细胞SAg蛋白A的结合。最后,我们确定了主要存在于Ig重链可变区第一和第三构架区、在传统高变环之外的氨基酸位置,这些位置与gp120结合相关。在三维序列同源性模型中,这些残基部分重叠于预测的V(H)3+ Ig的SAg蛋白A结合位点。

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