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重组人源化抗可卡因单克隆抗体及其Fab片段的表征

Characterization of a recombinant humanized anti-cocaine monoclonal antibody and its Fab fragment.

作者信息

Kirley Terence L, Norman Andrew B

机构信息

a Department of Pharmacology and Cell Biophysics ; College of Medicine ; University of Cincinnati ; Cincinnati , OH USA.

出版信息

Hum Vaccin Immunother. 2015;11(2):458-67. doi: 10.4161/21645515.2014.990856.

Abstract

Variations of post-translational modifications are important for stability and in vivo behavior of therapeutic antibodies. A recombinant humanized anti-cocaine monoclonal antibody (h2E2) was characterized for heterogeneity of N-linked glycosylation and disulfide bonds. In addition, charge heterogeneity, which is partially due to the presence or absence of C-terminal lysine on the heavy chains, was examined. For cocaine overdose therapy, Fab fragments may be therapeutic, and thus, a simplified method of generation, purification, and characterization of the Fab fragment generated by Endoproteinase Lys-C digestion was devised. Both the intact h2E2 antibody and purified Fab fragments were analyzed for their affinities for cocaine and 2 of its metabolites, benzoylecgonine and cocaethylene, by fluorescence quenching of intrinsic antibody tyrosine and tryptophan fluorescence resulting from binding of these drugs. Binding constants obtained from fluorescence quenching measurements are in agreement with recently published radioligand and ELISA binding assays. The dissociation constants determined for the h2E2 monoclonal and its Fab fragment are approximately 1, 5, and 20 nM for cocaethylene, cocaine, and benzoylecgonine, respectively. Tryptophan fluorescence quenching (emission at 330 nm) was measured after either excitation of tyrosine and tryptophan (280 nm) or selective excitation of tryptophan alone (295 nm). More accurate binding constants are obtained using tryptophan selective excitation at 295 nm, likely due to interfering absorption of cocaine and metabolites at 280 nm. These quenching results are consistent with multiple tryptophan and tyrosine residues in or near the predicted binding location of cocaine in a previously published 3-D model of this antibody's variable region.

摘要

翻译后修饰的变化对于治疗性抗体的稳定性和体内行为很重要。对一种重组人源化抗可卡因单克隆抗体(h2E2)的N-糖基化和二硫键异质性进行了表征。此外,还检测了电荷异质性,其部分归因于重链上C末端赖氨酸的存在与否。对于可卡因过量治疗,Fab片段可能具有治疗作用,因此,设计了一种通过内肽酶Lys-C消化产生、纯化和表征Fab片段的简化方法。通过这些药物结合导致的抗体固有酪氨酸和色氨酸荧光的淬灭,分析了完整的h2E2抗体和纯化的Fab片段对可卡因及其两种代谢物苯甲酰芽子碱和古柯乙烯的亲和力。从荧光淬灭测量中获得的结合常数与最近发表的放射性配体和ELISA结合测定结果一致。h2E2单克隆抗体及其Fab片段对古柯乙烯、可卡因和苯甲酰芽子碱的解离常数分别约为1、5和20 nM。在酪氨酸和色氨酸激发(280 nm)或仅色氨酸选择性激发(295 nm)后,测量色氨酸荧光淬灭(发射波长为330 nm)。使用295 nm的色氨酸选择性激发可获得更准确的结合常数,这可能是由于可卡因和代谢物在280 nm处的干扰吸收。这些淬灭结果与先前发表的该抗体可变区三维模型中可卡因预测结合位置内或附近的多个色氨酸和酪氨酸残基一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b900/4514192/db84359cc5bc/khvi-11-02-990856-g001.jpg

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