组氨酸
化学
试剂
洗脱
蛋白质-蛋白质相互作用
结合位点
合理设计
蛋白质G
氨基酸
生物化学
生物物理学
抗体
色谱法
生物
纳米技术
材料科学
有机化学
遗传学
作者
Ramesh K. Jha,Allison Yankey,Kalifa Shabazz,Leslie Naranjo,Sang‐Min Shin,Nileena Velappan,Andrew Bradbury,Charlie E. M. Strauss
标识
DOI:10.1021/acschembio.0c00943
摘要
While natural protein–protein interactions have evolved to be induced by complex stimuli, rational design of interactions that can be switched-on-demand still remain challenging in the protein design world. Here, we demonstrate that a computationally redesigned natural interface for improved binding affinity could further be mutated to adopt a pH switchable interaction. The redesigned interface of Protein G/human IgG Fc domain (referred to as PrG/hIgG), when incorporated with histidine and glutamic acid on PrG (PrG-EHHE), showed a switch in binding affinity by 50-fold when the pH was altered from mild acidic to mild basic. The wild-type (WT) interface showed a negligible switch. The overall binding affinity under mild acidic pH for PrG-EHHE outperformed the wild-type PrG (PrG-WT) interaction. The new reagent PrG-EHHE can be revolutionary in IgG purification, since the standard method of using an extreme acidic pH for elution can be circumvented.
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