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The intrinsic cysteine and histidine residues of the anti-Salmonella antibody Sel55-4: a model for the introduction of new functions into antibody-binding sites

机译:沙门氏菌抗体Sel55-4的内在半胱氨酸和组氨酸残基:将新功能引入抗体结合位点的模型

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New functions can be incorporated into anti-hapten or anti-protein antibodies by mutating selected residues in the binding-site region either to Cys, to allow alkylation with reagents bearing the desired functional groups, or to His, to create metal-binding sites or to make antigen binding pH-sensitive. However, choosing suitable sites for these mutations has been hampered by the lack of antibodies with these features, to serve as models. Remarkably, the anti-carbohydrate antibody Sel55-4, specific for the Salmonella group B lipopolysaccharide, already has a Cys and two pairs of His residues close to the antigen-binding pocket in its structure, and shows pH-dependent antigen binding. We therefore investigated modification of its Cys94L in an scFv version of the antibody with the aims of creating a 'reagentless' fluorescent sensor and attaching a metal-binding group that might confer lyase activity. These groups were successfully introduced, as judged by mass spectrometry, and had only slightly reduced antigen binding in enzyme-linked immunosorbent assay. The fluorescent product was sensitive to addition of antigen in a solution format, unlike a modification of a more distant Cys introduced into the VH CDR4 loop. Two other routes to modulate antigen binding were also explored, metal binding by the His pair alongside the antigen-binding pocket and insertions into CDR4 to extend the antigen-contact area. His residues adjacent to the antigen-binding pocket bound copper, causing a 5-fold decrease in antigen binding. In CDR4 of the VH domain, the preferred insert length was four residues, which gave stable antigen-binding products but did not improve overall antigen affinity.
机译:通过使结合位点区域中的选定残基突变为Cys,以允许使用带有所需官能团的试剂或与His结合的试剂进行烷基化,从而将新功能整合到抗半抗原或抗蛋白抗体中,从而形成金属结合位点或使抗原结合对pH敏感。然而,由于缺乏具有这些特征的抗体作为模型,已经阻碍了为这些突变选择合适的位点。值得注意的是,对沙门氏菌B组脂多糖特异的抗碳水化合物抗体Sel55-4在其结构中已接近抗原结合袋的位置具有Cys和两对His残基,并显示出pH依赖性抗原结合。因此,我们研究了在抗体的scFv版本中对其Cys94L的修饰,目的是创建“无试剂”荧光传感器并连接可能赋予裂解酶活性的金属结合基团。通过质谱分析,成功地引入了这些组,并且在酶联免疫吸附测定中仅略微降低了抗原结合。该荧光产物对溶液形式的抗原添加敏感,这与引入VH CDR4环的更远的Cys的修饰不同。还探索了调节抗原结合的其他两种途径,即通过His对与抗原结合袋一起与金属结合,并插入CDR4以扩展抗原接触区域。他的邻近抗原结合袋的残基结合了铜,导致抗原结合降低了5倍。在VH结构域的CDR4中,优选的插入长度为四个残基,可提供稳定的抗原结合产物,但不会提高总体抗原亲和力。

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