计算生物学
基因组编辑
Cas9
蛋白质工程
生物
基因组
突变
基因组工程
遗传学
计算机科学
突变体
基因
生物化学
酶
作者
Gigi C.G. Choi,Peng Zhou,Chaya T. L. Yuen,Becky K.C. Chan,Feng Xu,Siyu Bao,Hoi Yee Chu,Dawn Thean,Kaeling Tan,Koon Ho Wong,Zongli Zheng,Alan S.L. Wong
出处
期刊:Nature Methods
[Springer Nature]
日期:2019-07-15
卷期号:16 (8): 722-730
被引量:49
标识
DOI:10.1038/s41592-019-0473-0
摘要
The combined effect of multiple mutations on protein function is hard to predict; thus, the ability to functionally assess a vast number of protein sequence variants would be practically useful for protein engineering. Here we present a high-throughput platform that enables scalable assembly and parallel characterization of barcoded protein variants with combinatorial modifications. We demonstrate this platform, which we name CombiSEAL, by systematically characterizing a library of 948 combination mutants of the widely used Streptococcus pyogenes Cas9 (SpCas9) nuclease to optimize its genome-editing activity in human cells. The ease with which the editing activities of the pool of SpCas9 variants can be assessed at multiple on- and off-target sites accelerates the identification of optimized variants and facilitates the study of mutational epistasis. We successfully identify Opti-SpCas9, which possesses enhanced editing specificity without sacrificing potency and broad targeting range. This platform is broadly applicable for engineering proteins through combinatorial modifications en masse.
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