Engineering of TEV protease variants by yeast ER sequestration screening (YESS) of combinatorial libraries

蛋白酶 蛋白质工程 蛋白酵素 生物 酿酒酵母 酵母 融合蛋白 生物化学 烟草蚀刻病毒 肽库 内质网 定向进化 肽序列 酶 重组DNA 病毒 基因 突变体 病毒学 植物病毒 马铃薯Y病毒
作者
Yi Li,Mark C. Gebhard,Qing Li,Joseph M. Taft,George Georgiou,Brent L. Iverson
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:110 (18): 7229-7234 被引量:135
标识
DOI:10.1073/pnas.1215994110
摘要

Myriad new applications of proteases would be enabled by an ability to fine-tune substrate specificity and activity. Herein we present a general strategy for engineering protease selectivity and activity by capitalizing on sequestration of the protease to be engineered within the yeast endoplasmic reticulum (ER). A substrate fusion protein composed of yeast adhesion receptor subunit Aga2, selection and counterselection substrate sequences, multiple intervening epitope tag sequences, and a C - terminal ER retention sequence is coexpressed with a protease library. Cleavage of the substrate fusion protein by the protease eliminates the ER retention sequence, facilitating transport to the yeast surface. Yeast cells that display Aga2 fusions in which only the selection substrate is cleaved are isolated by multicolor FACS with fluorescently labeled antiepitope tag antibodies. Using this system, the Tobacco Etch Virus protease (TEV-P), which strongly prefers Gln at P1 of its canonical ENLYFQ↓S substrate, was engineered to recognize selectively Glu or His at P1. Kinetic analysis indicated an overall 5,000-fold and 1,100-fold change in selectivity, respectively, for the Glu- and His-specific TEV variants, both of which retained high catalytic turnover. Human granzyme K and the hepatitis C virus protease were also shown to be amenable to this unique approach. Further, by adjusting the signaling strategy to identify phosphorylated as opposed to cleaved sequences, this unique system was shown to be compatible with the human Abelson tyrosine kinase.
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