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一种使用组合组氨酸扫描文库和酵母展示技术构建抗体pH开关的通用方法。

A generic approach to engineer antibody pH-switches using combinatorial histidine scanning libraries and yeast display.

作者信息

Schröter Christian, Günther Ralf, Rhiel Laura, Becker Stefan, Toleikis Lars, Doerner Achim, Becker Janine, Schönemann Andreas, Nasu Daichi, Neuteboom Berend, Kolmar Harald, Hock Björn

机构信息

a Institute for Organic Chemistry and Biochemistry ; Technische Universität Darmstadt ; Darmstadt , Germany.

出版信息

MAbs. 2015;7(1):138-51. doi: 10.4161/19420862.2014.985993.

Abstract

There is growing interest in the fast and robust engineering of protein pH-sensitivity that aims to reduce binding at acidic pH, compared to neutral pH. Here, we describe a novel strategy for the incorporation of pH-sensitive antigen binding functions into antibody variable domains using combinatorial histidine scanning libraries and yeast surface display. The strategy allows simultaneous screening for both, high affinity binding at pH 7.4 and pH-sensitivity, and excludes conventional negative selection steps. As proof of concept, we applied this strategy to incorporate pH-dependent antigen binding into the complementary-determining regions of adalimumab. After 3 consecutive rounds of separate heavy and light chain library screening, pH-sensitive variants could be isolated. Heavy and light chain mutations were combined, resulting in 3 full-length antibody variants that revealed sharp, reversible pH-dependent binding profiles. Dissociation rate constants at pH 6.0 increased 230- to 780-fold, while high affinity binding at pH 7.4 in the sub-nanomolar range was retained. Furthermore, binding to huFcRn and thermal stability were not affected by histidine substitutions. Overall, this study emphasizes a generalizable strategy for engineering pH-switch functions potentially applicable to a variety of antibodies and further proteins-based therapeutics.

摘要

与中性pH相比,旨在减少酸性pH下结合的蛋白质pH敏感性快速且稳健的工程化受到越来越多的关注。在此,我们描述了一种使用组合组氨酸扫描文库和酵母表面展示将pH敏感抗原结合功能整合到抗体可变结构域中的新策略。该策略允许同时筛选pH 7.4下的高亲和力结合和pH敏感性,并排除传统的阴性选择步骤。作为概念验证,我们应用此策略将pH依赖性抗原结合整合到阿达木单抗的互补决定区中。经过连续三轮分别对重链和轻链文库进行筛选后,可分离出pH敏感变体。将重链和轻链突变组合,得到3个全长抗体变体,它们显示出尖锐、可逆的pH依赖性结合曲线。pH 6.0时的解离速率常数增加了230至780倍,同时在亚纳摩尔范围内保留了pH 7.4下的高亲和力结合。此外,与huFcRn的结合和热稳定性不受组氨酸取代的影响。总体而言,本研究强调了一种可推广的策略,用于工程化pH开关功能,可能适用于多种抗体和其他基于蛋白质的治疗药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a63/4622719/f973d33846b9/kmab-07-01-985993-g001.jpg

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