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抗体D1.3与溶菌酶相互作用中接触残基的能量和动力学贡献。

Energetic and kinetic contributions of contact residues of antibody D1.3 in the interaction with lysozyme.

作者信息

England P, Brégégère F, Bedouelle H

机构信息

Protein-Engineering Group (CNRS-URA 1129), Institut Pasteur, Paris, France.

出版信息

Biochemistry. 1997 Jan 7;36(1):164-72. doi: 10.1021/bi961419y.

Abstract

Fully functional variable fragments (Fv) of D1.3, a mouse antibody directed against the hen egg lysozyme, were readily produced as hybrids (Fv-MalE) with the maltose-binding protein of Escherichia coli and purified independently of their antigen-binding properties. We used site-directed mutations of residues in the complementarity-determining regions (CDRs) of D1.3 as local conformational probes, and compared their effects on the binding of Fv and Fv-MalE to lysozyme. We found that the MalE moiety did not significantly interfere with the interaction between the antigen and the antibody Fv fragment. We then determined the contribution of several potential contact residues of D1.3 in the interaction with lysozyme, by assaying the effect of site-directed mutations on the kinetics of association and dissociation of the complex between Fv-MalE and immobilized lysozyme, using the BIAcore apparatus. While the k(on) values were virtually unaffected by the mutations, the k(off) values varied by more than three orders of magnitude. Both charged (aspartate and arginine) and aromatic (tyrosine and tryptophan) residues in the CDR3 regions of the heavy and light chains of D1.3, which form the center of its antigen-combining site, played a preponderant part in the binding of lysozyme. Our results also showed that indirect hydrogen bonds, bridged by water molecules, contributed significantly to the interaction between D1.3 and lysozyme, and that their energy could be estimated at 1 to 2 kcal.mol-1.

摘要

D1.3是一种针对鸡蛋清溶菌酶的小鼠抗体,其完全功能性可变片段(Fv)很容易作为与大肠杆菌麦芽糖结合蛋白的杂交体(Fv-MalE)产生,并可独立于其抗原结合特性进行纯化。我们将D1.3互补决定区(CDR)中的残基进行定点突变作为局部构象探针,并比较它们对Fv和Fv-MalE与溶菌酶结合的影响。我们发现MalE部分不会显著干扰抗原与抗体Fv片段之间的相互作用。然后,我们使用BIAcore仪器,通过测定定点突变对Fv-MalE与固定化溶菌酶之间复合物结合和解离动力学的影响,确定了D1.3中几个潜在接触残基在与溶菌酶相互作用中的贡献。虽然k(on)值实际上不受突变影响,但k(off)值变化超过三个数量级。D1.3重链和轻链CDR3区域中的带电(天冬氨酸和精氨酸)和芳香族(酪氨酸和色氨酸)残基形成了其抗原结合位点的中心,在溶菌酶的结合中起主要作用。我们的结果还表明,由水分子桥连的间接氢键对D1.3与溶菌酶之间的相互作用有显著贡献,其能量估计为1至2千卡·摩尔-1。

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