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抗体互补决定区构象灵活性在分子模拟表现中的作用

Role of antibody paratope conformational flexibility in the manifestation of molecular mimicry.

作者信息

Krishnan Lavanya, Sahni Gaurav, Kaur Kanwal J, Salunke Dinakar M

机构信息

National Institute of Immunology, New Delhi, India.

出版信息

Biophys J. 2008 Feb 15;94(4):1367-76. doi: 10.1529/biophysj.107.108654. Epub 2007 Nov 21.

Abstract

Molecular mimicry is a recurrent theme in host defense processes. The correlation of functional mimicry with the structural features of the antibody paratope has been investigated, addressing the consequences of mimicry in host immune mechanisms. Two anti-mannopyranoside antibodies, 1H7 and 2D10, representing the possible extremes of the recognition spectrum with regard to peptide-carbohydrate mimicry were examined. Crystallographic and molecular dynamics simulation analyses established correlation between the antibody flexibility and the manifestation of mimicry. It was evident that monoclonal antibody (mAb) 1H7, which has a narrow specificity in favor of the immunizing antigen, exhibited structural invariance. On the other hand, the antigen-combining site of 2D10, the mimicry-recognizing antibody, showed substantial divergence in the complementarity determining region loops. The docking of mannopyranoside within the antibody paratope revealed multiple modes of binding of the carbohydrate antigen in mAb 2D10 vis à vis single docking mode in mAb 1H7, which overlapped with the common monosaccharide binding site defined in anti-carbohydrate antibodies. The presence of additional antigen binding modes is perhaps reflective of the utilization of conformational flexibility in molecular mimicry. A relatively broader recognition repertoire--attributable to paratope flexibility--may facilitate the recognition of altered antigens of invading pathogens while the antibodies with narrow recognition specificity maintain the fidelity of the response.

摘要

分子模拟是宿主防御过程中反复出现的主题。已经研究了功能模拟与抗体互补决定区结构特征之间的相关性,探讨了模拟在宿主免疫机制中的后果。研究了两种抗甘露吡喃糖苷抗体1H7和2D10,它们代表了在肽-碳水化合物模拟方面可能的极端识别谱。晶体学和分子动力学模拟分析确定了抗体灵活性与模拟表现之间的相关性。很明显,对免疫抗原具有狭窄特异性的单克隆抗体(mAb)1H7表现出结构不变性。另一方面,模拟识别抗体2D10的抗原结合位点在互补决定区环中显示出显著差异。甘露吡喃糖苷在抗体互补决定区内的对接揭示了mAb 2D10中碳水化合物抗原的多种结合模式,而mAb 1H7中只有单一对接模式,且与抗碳水化合物抗体中定义的常见单糖结合位点重叠。额外抗原结合模式的存在可能反映了分子模拟中构象灵活性的利用。相对更广泛的识别谱——归因于互补决定区的灵活性——可能有助于识别入侵病原体的改变抗原,而识别特异性狭窄的抗体则保持反应的保真度。

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