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对氨基苯胂酸特异性抗体结合位点几何结构的保守性

Conservation of binding site geometry among p-azophenylarsonate-specific antibodies.

作者信息

Parhami-Seren B, Kussie P H, Strong R K, Margolies M N

机构信息

Department of Surgery, Massachusetts General Hospital, Boston 02114.

出版信息

J Immunol. 1993 Mar 1;150(5):1829-37.

PMID:8436818
Abstract

Murine A/J anti-p-azophenylarsonate mAb that express a dominant cross-reactive Id are encoded by a single set of germ-line VH and VL region genes. The crystal structure of the Fab of antibody 36-71, which uses this canonical set of genes but is somatically mutated, was previously determined. An Fab 36-71:phenylarsonate complex was modeled, identifying amino acid side chains that were proposed as contact residues to hapten. The remarkable conservation of these residues among canonical anti-p-azophenylarsonate antibodies suggested that the overall binding site geometry was maintained among somatically mutated antiarsonate monoclonal antibodies. To test this hypothesis, we used the germ-line-encoded antibody 36-65 to construct mutant antibodies, using oligonucleotide-directed mutagenesis, which differed only at the putative H chain hapten-contacting residues, and measured their hapten binding. A framework residue at H chain position 47 involved in a hydrogen bond network with CDR residues was also mutated. Substitution of several amino acids at each position permitted evaluation of the stereochemical requirements for binding. The results indicate the importance of aromatic stacking of two H chain tyrosine residues against the phenyl ring of the hapten in maintaining affinity, as well as strict complementarity at H chain position 35. The results are consistent with the crystal model of the combining site, and provide further evidence for conservation of the three-dimensional binding site motif among antiarsonate antibodies that bear a dominant heritable ld.

摘要

表达显性交叉反应性独特型的小鼠A/J抗对偶氮苯胂酸盐单克隆抗体由一组单一的种系VH和VL区域基因编码。抗体36 - 71的Fab晶体结构先前已被确定,该抗体使用这套典型基因,但存在体细胞突变。构建了Fab 36 - 71:苯胂酸盐复合物模型,确定了被认为是与半抗原接触残基的氨基酸侧链。在典型的抗对偶氮苯胂酸盐抗体中这些残基的显著保守性表明,在体细胞突变的抗胂酸盐单克隆抗体中整体结合位点几何结构得以维持。为了验证这一假设,我们使用种系编码的抗体36 - 65,通过寡核苷酸定向诱变构建仅在假定的重链半抗原接触残基处不同的突变抗体,并测量它们与半抗原的结合。重链位置47处与互补决定区残基形成氢键网络的一个骨架残基也发生了突变。在每个位置替换几个氨基酸可以评估结合的立体化学要求。结果表明,两个重链酪氨酸残基与半抗原苯环的芳香堆积对于维持亲和力很重要,以及重链位置35处的严格互补性也很重要。结果与结合位点的晶体模型一致,并为具有显性可遗传独特型的抗胂酸盐抗体中三维结合位点基序的保守性提供了进一步证据。

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