小鼠/人嵌合抗结直肠癌抗体VH CDR3区97位酪氨酸残基与TAG72抗原形成氢键。

J Xiang, E Liu, L T Delbaere, Z Chen, X Luo, Y Qi, C Rathgeber
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引用次数: 1

摘要

通过位点定向诱变技术,小鼠/人嵌合抗tag72抗体cB72.3m4的VH CDR3区96和97位的酪氨酸被苯丙氨酸残基和来自不同氨基酸基的一些氨基酸取代。将含有突变体VH区片段(Vm11-16)以及免疫球蛋白增强片段(E)、启动子片段(P1)和人类基因组C1区片段的表达载体mpSV2neo-EP1-Vm11-16C1分别转染到重链缺失突变细胞系B72.3Mut(K)中。从转染上清中纯化突变嵌合cB72.3m11-16抗体,比较其与原始cB72.3m4抗体对TAG72抗原的结合亲和力。数据显示,用苯丙氨酸取代酪氨酸和在VH CDR3区97位的丝氨酸、天冬酰胺、组氨酸和精氨酸等多个氨基酸的结合亲和力均降低了约18倍,而用苯丙氨酸取代VH CDR3区96位的酪氨酸不影响cB72.3m4抗体的结合亲和力。这表明VH CDR3区97位酪氨酸残基在B72.3/TAG72抗体/抗原相互作用中处于接触位置,97位酪氨酸侧链的末端羟基与TAG72抗原形成氢键,而96位酪氨酸侧链则没有。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The tyrosine residue at position 97 in the VH CDR3 region of a mouse/human chimeric anti-colorectal carcinoma antibody contributes hydrogen bonding to the TAG72 antigen.

One amino acid, tyrosine at position 96 and 97 in the VH CDR3 region of a mouse/human chimeric anti-TAG72 antibody cB72.3m4 was substituted by the phenylalanine residue and by a number of amino acids from different amino acid groups by the site-directed mutagenesis technique. The expression vector mpSV2neo-EP1-Vm11-16C1 containing mutant VH region fragments (Vm11-16) as well as the immunoglobulin enhances (E), promoter (P1) and the human genomic C1 region fragments, were transfected into a heavy-chain-loss mutant cell line B72.3Mut(K), respectively. Mutant chimeric cB72.3m11-16 antibodies were purified from the transfectant supernates and compared based upon their binding affinity for the TAG72 antigen relative to that of the original cB72.3m4 antibody. The data showed that a single amino acid substitution of tyrosine by phenylalanine and a number of amino acids including serine, asparagine, histidine and arginine at position 97 in the VH CDR3 region all resulted in approximate 18-fold lower binding affinity, whereas the substitution of tyrosine by phenylalanine at position 96 in the VH CDR3 region did not affect the binding affinity of the cB72.3m4 antibody. This suggests that the tyrosine residue at position 97 in the VH CDR3 region is in a contact position in the B72.3/TAG72 antibody/antigen interaction, and that the terminal hydroxyl group of the position 97 tyrosine side-chain contributes hydrogen bonding to the TAG72 antigen, whereas the position 96 tyrosine side-chain does not.

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