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A Comparative Analysis of the Immunological Evolution of Antibody 28B4

机译:抗体28B4免疫进化的比较分析

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In an effort to gain greater insight into the evolution of the redox active, catalytic antibody 28B4, the germline genes used by the mouse to generate this antibody were cloned and expressed, and the X-ray crystal structures of the unliganded and hapten-bound germline Fab of antibody 28B4 were determined. Comparison with the previously determined structures of the unliganded and hapten-bound affinity-matured Fab [Hsieh-Wilson, L. C., Schultz, P. G., and Stevens, R. C. (1996) Proc. Natl. Acad. Sci. U.S.A. 93, 5363] shows that the germline antibody binds the p-nitrophenyl ring of hapten 3 in an orientation significantly different from that seen in the affinity-matured antibody, whereas the phosphonate moiety is bound in a similar mode by both antibodies. The affinity-matured antibody 28B4 has more electrostatic and hydrophobic interactions with hapten 3 than the germline antibody and binds the hapten in a lock-and-key fashion. In contrast, significant conformational changes occur in the loops of CDR H3 and CDR L1 upon hapten binding to the germline antibody, consistent with the notion of structural plasticity in the germline antibody-combining site [Wedemayer, G. J., Patten, P. A., Wang, L. H., Schultz, P. G., and Stevens, R. C. (1997) Science 276, 1665]. The structural differences are reflected in the differential binding affinities of the germline Fab (K_d = 25 #mu#M) and 28B4 Fab (K_d = 37 nM) to hapten 3. Nine replacement mutations were found to accumulate in the affinity-matured antibody 28B4 compared to its germline precursor. The effects of each mutation on the binding affinity of the antibody to hapten 3 were characterized in detail in the contexts of both the germline and the affinity-matured antibodies. One of the mutations, Asp95~HTrp, leads to a change in the orientation of the bound hapten, and its presence is a prerequisite for other somatic mutations to enhance the binding affinity of the germline antibody for hapten 3. Thus, the germline antibody of 28B4 acquired functionally important mutations in a stepwise manner, which fits into a multicycle mutation, affinity selection, and clonal expansion model for germline antibody evolution. Two other antibodies, 20-1 and NZA6, with very different antigen specificities were found to be highly homologous to the germline antibody of 28B4, consistent with the notion that certain germline variable-region gene combinations can give rise to polyspecific hapten binding sites [Romesberg, F. E., Spiller, B., Schultz, P. G., and Stevens, R. C. (1998) Science 279, 1929]. The ultimate specificity of the polyspecific germline antibody appears to be defined by CDR H3 variability and subsequent somatic mutation. Insights into the evolution of antibody-combining sites provided by this and other structural studies are discussed.
机译:为了更深入地了解氧化还原活性催化抗体28B4的进化,克隆并表达了小鼠用来生成该抗体的种系基因,并进行了表达,未结合半抗原的种系的X射线晶体结构确定了抗体28B4的Fab。与先前确定的未配体和半抗原结合的亲和力成熟的Fab [Hsieh-Wilson,L.C.,Schultz,P.G.,and Stevens,R.C.(1996)Proc。 Natl。学院科学美国专利93,5363]显示种系抗体以与亲和力成熟的抗体中明显不同的方向结合半抗原3的对硝基苯环,而膦酸酯部分被两种抗体以相似的方式结合。与种系抗体相比,亲和力成熟的抗体28B4与半抗原3具有更多的静电和疏水相互作用,并且以锁钥方式结合半抗原。相反,半抗原结合种系抗体后,CDR H3和CDR L1的环中发生了显着的构象变化,这与种系抗体结合位点的结构可塑性概念一致[Wedemayer,GJ,Patten,PA,Wang,LH ,Schultz,PG和Stevens,RC(1997)Science 276,1665]。结构差异反映在种系Fab(K_d = 25#mu#M)和28B4 Fab(K_d = 37 nM)与半抗原3的差异结合亲和力上。发现九个置换突变累积在亲和力成熟的抗体28B4中。与其种系前体相比。在种系和亲和力成熟的抗体的背景下,都详细描述了每种突变对抗体与半抗原3结合亲和力的影响。突变之一Asp95〜HTrp导致结合的半抗原的方向发生变化,并且它的存在是其他体细胞突变增强种系抗体对半抗原3结合亲和力的先决条件。 28B4以逐步的方式获得功能上重要的突变,该突变适合于多周期突变,亲和力选择和种系抗体进化的克隆扩增模型。发现另外两种具有非常不同的抗原特异性的抗体20-1和NZA6与28B4的种系抗体高度同源,这与某些种系可变区基因组合可产生多特异性半抗原结合位点的观点一致[Romesberg ,FE,Spiller,B.,Schultz,PG和Stevens,RC(1998)Science 279,1929]。多特异性种系抗体的最终特异性似乎由CDR H3变异性和随后的体细胞突变定义。讨论了由本研究和其他结构研究提供的对抗体结合位点进化的见解。

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