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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Engineering of protease variants exhibiting high catalytic activity and exquisite substrate selectivity
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Engineering of protease variants exhibiting high catalytic activity and exquisite substrate selectivity

机译:具有高催化活性和出色的底物选择性的蛋白酶变体工程化

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摘要

The exquisite selectivity and catalytic activity of enzymes have been shaped by the effects of positive and negative selection pressure during the course of evolution. In contrast, enzyme variants engineered by using in vitro screening techniques to accept novel substrates typically display a higher degree of catalytic promiscuity and lower total turnover in comparison with their natural counterparts. Using bacterial display and multiparameter flow cytometry, we have developed a novel methodology for emulating positive and negative selective pressure in vitro for the isolation of enzyme variants with reactivity for desired novel substrates, while simultaneously excluding those with reactivity toward undesired substrates. Screening of a large library of random mutants of the Escherichia coli endopeptidase OmpT led to the isolation of an enzyme variant, 1.3.19, that cleaved an Ala-Arg peptide bond instead of the Arg-Arg bond preferred by the WT enzyme. Variant 1.3.19 exhibited greater than three million-fold selectivity (-Ala-Arg-/-Arg-Arg-) and a catalytic efficiency for Ala-Arg cleavage that is the same as that displayed by the parent for the preferred substrate, Arg-Arg. A single amino acid Ser223Arg substitution was shown to recapitulate completely the unique catalytic properties of the 1.3.19 variant. These results can be explained by proposing that this mutation acts to "swap" the P_1 Arg side chain normally found in WT substrate peptides with the 223Arg side chain in the S_1 subsite of OmpT.
机译:在进化过程中,正负选择压力的作用已经决定了酶的精湛的选择性和催化活性。相反,与天然对应物相比,通过使用体外筛选技术进行工程改造以接受新型底物的酶变体通常表现出更高的催化混杂度和更低的总营业额。使用细菌展示和多参数流式细胞仪,我们已经开发了一种新颖的方法,可以在体外模拟正负选择压力,以分离具有对所需新型底物具有反应性的酶变体,同时排除对不需要的底物具有反应性的那些。对大肠杆菌内肽酶OmpT随机突变体的大型文库的筛选导致分离出1.3.19的酶变体,该酶变体切割了Ala-Arg肽键,而不是WT酶优选的Arg-Arg键。变体1.3.19表现出大于三百万倍的选择性(-Ala-Arg-/-Arg-Arg-),并且Ala-Arg裂解的催化效率与母体对优选底物Arg所显示的催化效率相同。 -Arg已显示单个氨基酸Ser223Arg取代完全概括了1.3.19变体的独特催化特性。可以通过提出这种突变来“交换”通常在OmpT的S_1子位点中具有223Arg侧链的WT底物肽中通常发现的P_1 Arg侧链来解释这些结果。

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