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通过定点诱变对鸡溶菌酶HyHEL-10表位进行高分辨率定位。

High-resolution mapping of the HyHEL-10 epitope of chicken lysozyme by site-directed mutagenesis.

作者信息

Kam-Morgan L N, Smith-Gill S J, Taylor M G, Zhang L, Wilson A C, Kirsch J F

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

Proc Natl Acad Sci U S A. 1993 May 1;90(9):3958-62. doi: 10.1073/pnas.90.9.3958.

Abstract

The complex formed between hen egg white lysozyme (HEL) and the monoclonal antibody HyHEL-10 Fab fragment has an interface composed of van der Waals interactions, hydrogen bonds, and a single ion pair. The antibody overlaps part of the active site cleft. Putative critical residues within the epitope region of HEL, identified from the x-ray crystallographic structure of the complex, were replaced by site-directed mutagenesis to probe their relative importance in determining affinity of the antibody for HEL. Twenty single mutations of HEL at three contact residues (Arg-21HEL, Asp-101HEL, and Gly-102HEL) and at a partially buried residue (Asn-19HEL) in the epitope were made, and the effects on the free energies of dissociation were measured. A correlation between increased amino acid side-chain volume and reduced affinity for HELs with mutations at position 101 was observed. The D101GHEL mutant is bound to HyHEL-10 as tightly as wild-type enzyme, but the delta delta Gdissoc is increased by about 2.2 kcal (9.2 kJ)/mol for the larger residues in this position. HEL variants with lysine or histidine replacements for arginine at position 21 are bound 1.4-2.7 times more tightly than those with neutral or negatively charged amino acids in this position. These exhibit 1/40 the affinity for HyHEL-10 Fab compared with wild type. There is no side-chain volume correlation with delta delta Gdissoc at position 21. Although Gly-102HEL and Asn-19HEL are in the epitope, replacements at these positions have no effect on the affinity of HEL for the antibody.

摘要

鸡蛋清溶菌酶(HEL)与单克隆抗体HyHEL - 10 Fab片段形成的复合物具有一个由范德华相互作用、氢键和一对离子对构成的界面。该抗体覆盖了活性位点裂隙的一部分。从复合物的X射线晶体结构中鉴定出的HEL表位区域内的推定关键残基,通过定点诱变进行替换,以探究它们在决定抗体对HEL亲和力方面的相对重要性。对HEL在表位的三个接触残基(Arg - 21HEL、Asp - 101HEL和Gly - 102HEL)以及一个部分埋藏的残基(Asn - 19HEL)进行了20个单突变,并测量了对解离自由能的影响。观察到氨基酸侧链体积增加与101位突变的HEL对HyHEL - 10亲和力降低之间存在相关性。D101GHEL突变体与野生型酶一样紧密地结合HyHEL - 10,但该位置较大残基的解离自由能变化(ΔΔGdissoc)增加了约2.2千卡(9.2千焦)/摩尔。21位用赖氨酸或组氨酸替代精氨酸的HEL变体比该位置具有中性或带负电荷氨基酸的变体结合紧密1.4 - 2.7倍。与野生型相比,这些变体对HyHEL - 10 Fab的亲和力仅为其1/40。21位不存在侧链体积与ΔΔGdissoc的相关性。尽管Gly - 102HEL和Asn - 19HEL在表位中,但这些位置的替换对HEL与抗体的亲和力没有影响。

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