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Structural plasticity and the evolution of antibody affinity and specificity.

机译:结构可塑性以及抗体亲和力和特异性的演变。

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摘要

The germline precursor to the ferrochelatase antibody 7G12 was found to bind the polyether jeffamine in addition to its cognate hapten N-methylmesoporphyrin. A comparison of the X-ray crystal structures of the ligand-free germline Fab and its complex with either hapten or jeffamine reveals that the germline antibody undergoes significant conformational changes upon the binding of these two structurally distinct ligands, which lead to increased antibody-ligand complementarity. The five somatic mutations introduced during affinity maturation lead to enhanced binding affinity for hapten and a loss in affinity for jeffamine. Moreover, a comparison of the crystal structures of the germline and affinity-matured antibodies reveals that somatic mutations not only fix the optimal binding site conformation for the hapten, but also introduce interactions that interfere with the binding of non-hapten molecules. The structural plasticity of this germline antibody and the structural effects of the somatic mutations that result in enhanced affinity and specificity for hapten likely represent general mechanisms used by the immune response, and perhaps primitive proteins, to evolve high affinity, selective receptors for so many distinct chemical structures.
机译:发现铁螯合酶抗体7G12的种系前体除了其同源的半抗原N-甲基甲卟啉外还结合了聚醚杰斐明。不含配体的种系Fab及其与半抗原或杰斐明的复合物的X射线晶体结构比较表明,在这两个结构不同的配体结合后,种系抗体发生了显着的构象变化,从而导致抗体配体增加互补性。在亲和力成熟过程中引入的五个体细胞突变导致对半抗原的结合亲和力增强,对杰夫明的亲和力降低。此外,对种系和亲和力成熟的抗体的晶体结构的比较表明,体细胞突变不仅固定了半抗原的最佳结合位点构象,而且还引入了干扰非半抗原分子结合的相互作用。这种种系抗体的结构可塑性以及导致对半抗原的亲和力和特异性增强的体细胞突变的结构效应,很可能代表了免疫应答(也许是原始蛋白)使用的一般机制,从而进化出了许多不同的高亲和力,选择性受体化学结构。

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