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Sortase-Mediated High-Throughput Screening Platform for Directed Enzyme Evolution

机译:排序酶介导的针对指导酶演进的高通量筛选平台

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摘要

Sortase-catalyzed ligations have emerged as powerful tools for the site-specific ligation of peptides and proteins in material science and biocatalysis. In this work, a directed sortase evolution strategy (SortEvolve) has been developed as a general high-throughput screening (HTS) platform to improve activity of sortase A (application 1) and to perform directed laccase evolution through a semipurification process in 96-well microtiter plate (MTP) (application 2). A semipurification process in polypropylene MTP (PP-MTP) is achieved through the anchor peptide LCI, which acts as adhesion promoter. To validate the SortEvolve screening platform for both applications, three site-saturation mutagenesis (SSM) libraries of sortase A (Sa-SrtA) from Staphylococcus aureus (application 1) and two SSM libraries of the copper efflux oxidase (CueO laccase) from Escherichia coli (application 2) were generated at literature reported positions. After screening and rescreening, an array of Sa-SrtA variants (including the previously reported P94S, D160N, and D165A) and CueO variants (including the previously reported D439A and P444A) were identified. Further recombinant Sa-SrtA variant P94T/D160L/D165Q and CueO variant D439V/P444V were characterized with 22-fold and 103-fold improvements in catalytic efficiency compared with corresponding wild-types, respectively. An important advantage of the SortEvolve screening platform in comparison to many MTP-based screening systems is that the background noise was minimized (decreased 20-fold; application 2) due to the employed semipurification process. In essence, SortEvolve provides a universal surface-functionalized screening platform for sortases and enzymes in which especially background activity can be minimized to enable successful directed evolution campaigns.
机译:排水酶催化的连接已成为肽和蛋白质在材料科学和生物分析中的特异性特异性结扎的强大工具。在这项工作中,已经开发了一种定向的分组演变策略(SORTEVOLVE)作为一般的高吞吐量筛选(HTS)平台,以改善分类酶A(应用程序1)的活动,并通过96孔中的半曝光过程执行定向漆晶箱演变微量滴定板(MTP)(应用2)。通过锚定肽LCI实现聚丙烯MTP(PP-MTP)中的半尿液尿过程,其用作粘合促进剂。为了验证应用程序的Sortevolve筛选平台,来自葡萄球菌(申请1)的分组A(SA-SRTA)的三个位点饱和诱变(SSM)文库和来自大肠杆菌的铜流出氧化酶(Cueo LaCcase)的两个SSM文库(申请2)在文献报告的位置产生。在筛选和重新筛选后,鉴定了一种SA-SRTA变体(包括先前报道的P94s,D160N和D165a)和Cueo变体(包括先前报道的D439a和p444a)的阵列。此外,重组SA-SRTA变体P94T / D160L / D165Q和Cueo变体D439V / P444V的特征在于分别与相应的野生型催化效率的22倍和103倍的提高。对于许多基于MTP的筛选系统相比,Sortevolve筛选平台的一个重要优点是由于所采用的半透析过程,最小化背景噪声(减少20倍;应用2)。从本质上讲,SoreVolve为分类和酶提供了一个通用的表面官能化筛选平台,其中可以最小化背景活动,以实现成功的指导演变运动。

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