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VH3家族抗体与葡萄球菌蛋白A的结构域D结合。

VH3 family antibodies bind domain D of staphylococcal protein A.

作者信息

Roben P W, Salem A N, Silverman G J

机构信息

Sam and Rose Stein Institute for Research on Aging, University of California, San Diego, La Jolla 92093, USA.

出版信息

J Immunol. 1995 Jun 15;154(12):6437-45.

PMID:7759880
Abstract

Staphylococcal protein A (SpA) is a 45-kDa bacterial membrane protein that can interact with either Fc gamma, a constant region portion of IgG, or with the Fab portion that also mediates conventional Ag binding. In recent reports, SpA has been shown to specifically interact with Fab derived from the VH3 family and is little affected by VH CDR3, JH, or light chain usage. To identify a site on SpA responsible for VH3 Fab binding, we cloned and expressed in Escherichia coli the 61 amino acid sequence of SpA that represents domain D, and this small protein exhibited both the VH3 Fab and Fc gamma binding specificities. Surface plasmon resonance measurements demonstrated that domain D and native SpA had the strongest binding interactions with an IgM-kappa encoded by the germline configuration of the VH3 gene VH26c. In contrast, the apparent affinities for Fc gamma binding were at least fivefold weaker. A variant of domain D was also created that is devoid of the three-codon insertion that distinguishes domain D from all other domains in SpA. Although this deletion did not significantly affect the VH3 Fab-mediated SpA binding activity, it did improve the affinity of Fc gamma binding by an order of magnitude. These observations characterize a site on SpA responsible for binding interactions with B cell Ag receptors that are highly analogous to that of superantigens for T cell receptors.

摘要

葡萄球菌蛋白A(SpA)是一种45 kDa的细菌膜蛋白,它可以与IgG的恒定区部分Fcγ相互作用,也可以与同样介导传统抗原结合的Fab部分相互作用。在最近的报道中,SpA已被证明能与源自VH3家族的Fab特异性相互作用,且很少受VH CDR3、JH或轻链使用情况的影响。为了确定SpA上负责与VH3 Fab结合的位点,我们在大肠杆菌中克隆并表达了代表结构域D的SpA的61个氨基酸序列,这种小蛋白同时表现出VH3 Fab和Fcγ结合特异性。表面等离子体共振测量表明,结构域D和天然SpA与由VH3基因VH26c的种系构型编码的IgM-κ具有最强的结合相互作用。相比之下,它们与Fcγ结合的表观亲和力至少弱五倍。还构建了结构域D的一个变体,该变体没有区分结构域D与SpA中所有其他结构域的三个密码子插入。尽管这种缺失并没有显著影响VH3 Fab介导的SpA结合活性,但它确实将Fcγ结合的亲和力提高了一个数量级。这些观察结果确定了SpA上一个负责与B细胞抗原受体结合相互作用的位点,该位点与T细胞受体的超抗原的结合位点高度相似。

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