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Exploring sequence-function space of a poplar glutathione transferase using designed information-rich gene variants

机译:利用设计的信息丰富的基因变体探索杨树谷胱甘肽转移酶的序列功能空间

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摘要

Exploring the vicinity around a locus of a protein in sequence space may identify homologs with enhanced properties, which could become valuable in biotechnical and other applications. A rational approach to this pursuit is the use of infologs, i.e. synthetic sequences with specific substitutions capturing maximal sequence information derived from the evolutionary history of the protein family. Ninety-five such infolog genes of poplar glutathione transferase were synthesized and expressed in Escherichia coli, and the catalytic activities of the proteins determined with alternative substrates. Sequenceactivity relationships derived from the infologs were used to design a second set of 47 infologs in which 90% of the members exceeded wild-type properties. Two mutants, C2 (V55I/E95D/D108E/A160V) and G5 (F13L/C70A/G122E), were further functionally characterized. The activities of the infologs with the alternative substrates 1-chloro-2,4-dinitrobenzene and phenethyl isothiocyanate, subject to different chemistries, were positively correlated, indicating that the examined mutations were affecting the overall catalytic competence without major shift in substrate discrimination. By contrast, the enhanced protein expressivity observed in many of the mutants were not similarly correlated with the activities. In conclusion, small libraries of well-defined infologs can be used to systematically explore sequence space to optimize proteins in multidimensional functional space.
机译:在序列空间中探索蛋白质位置附近的附近可以识别具有增强性能的同源物,这可能在生物技术和其他应用中变得有价值。这种追求的理性方法是使用Infologs,即具有特定替换的合成序列捕获源自蛋白质家族的进化历史的最大序列信息。在大肠杆菌中合成并表达杨树谷胱甘肽转移酶的95个infog基因,并用替代衬底测定的蛋白质的催化活性。源自INFOOLS的序列反应关系用于设计第二组47个INFOLOG,其中90%的构件超过野生型性能。进一步表征了两个突变体C2(V55I / E95D / D108E / A160V)和G5(F13L / C70A / G122E)。通过替代底物1-氯-2,4-二硝基苯和苯乙基异硫氰酸酯的活性,受到不同化学物质的含有呈正相关,表明所检查的突变正在影响整体催化能力而不会在基板歧视中的重大变化。相比之下,在许多突变体中观察到的增强蛋白质表达性与活性没有与活性相似。总之,可以使用明确定义的infolog的小文库来系统地探索序列空间以优化多维功能空间中的蛋白质。

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