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E. coli surface display of streptavidin for directed evolution of an allylic deallylase

机译:链霉亲和素的大肠杆菌表面展示用于定向进化烯丙基脱羧酶

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摘要

Artificial metalloenzymes (ArMs hereafter) combine attractive features of both homogeneous catalysts and enzymes and offer the potential to implement new-to-nature reactions in living organisms. Herein we present an E. coli surface display platform for streptavidin (Sav hereafter) relying on an Lpp-OmpA anchor. The system was used for the high throughput screening of a bioorthogonal CpRu-based artificial deallylase (ADAse) that uncages an allylcarbamate-protected aminocoumarin >1. Two rounds of directed evolution afforded the double mutant S112M–K121A that displayed a 36-fold increase in surface activity vs. cellular background and a 5.7-fold increased in vitro activity compared to the wild type enzyme. The crystal structure of the best ADAse reveals the importance of mutation S112M to stabilize the cofactor conformation inside the protein.
机译:人工金属酶(以下简称ArMs)结合了均相催化剂和酶的诱人特性,并为在活生物体中进行新自然反应提供了潜力。在此,我们提出了一种依赖于Lpp-OmpA锚链的链霉亲和素(以下简称Sav)的大肠杆菌表面展示平台。该系统用于高通量筛选基于生物正交CpRu的人工脱羧酶(ADAse),该酶解开了氨基甲酸烯丙酯保护的氨基香豆素> 1 。经过两轮定向进化,与野生型酶相比,双突变体S112M–K121A的表面活性相对于细胞本底提高了36倍,体外活性提高了5.7倍。最佳ADAse的晶体结构揭示了突变S112M对稳定蛋白质内部辅因子构象的重要性。

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