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Directed evolution of a G protein-coupled receptor for expression, stability, and binding selectivity

机译:指导G蛋白偶联受体的表达,稳定性和结合选择性的进化

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摘要

We outline a powerful method for the directed evolution of integral membrane proteins in the inner membrane of Escherichia coli. For a mammalian G protein-coupled receptor, we arrived at a sequence with an order-of-magnitude increase in functional expression that still retains the biochemical properties of wild type. This mutant also shows enhanced heterologous expression in eukaryotes (12-fold in Pichia pastoris and 3-fold in HEK293T cells) and greater stability when solubilized and purified, indicating that the biophysical properties of the protein had been under the pressure of selection. These improvements arise from multiple small contributions, which would be difficult to assemble by rational design. In a second screen, we rapidly pinpointed a single amino acid substitution in wild type that abolishes antagonist binding while retaining agonist-binding affinity. These approaches may alleviate existing bottlenecks in structural studies of these targets by providing sufficient quantities of stable variants in defined conformational states.
机译:我们概述了一种强大的方法,用于指导大肠杆菌内膜中整合膜蛋白的定向进化。对于哺乳动物的G蛋白偶联受体,我们得出的功能性表达数量级增加的序列仍然保留了野生型的生化特性。该突变体还显示出在真核生物中增强的异源表达(在毕赤酵母中为12倍,在HEK293T细胞中为3倍),并且在溶解和纯化时具有更高的稳定性,表明该蛋白质的生物物理特性一直处于选择压力之下。这些改进来自多个小的贡献,而这些贡献很难通过合理的设计来组装。在第二个筛选中,我们迅速查明了野生型中的单个氨基酸取代,该取代消除了拮抗剂结合,同时保留了激动剂结合亲和力。这些方法可以通过在定义的构象状态下提供足够数量的稳定变体来缓解这些靶标的结构研究中的现有瓶颈。

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