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组合突变大量优化了 SpCas9 的基因组编辑活性。

Combinatorial mutagenesis en masse optimizes the genome editing activities of SpCas9.

机构信息

Laboratory of Combinatorial Genetics and Synthetic Biology, School of Biomedical Sciences, The University of Hong Kong, Hong Kong, China.

Ming Wai Lau Centre for Reparative Medicine, Karolinska Institutet, Hong Kong, China.

出版信息

Nat Methods. 2019 Aug;16(8):722-730. doi: 10.1038/s41592-019-0473-0. Epub 2019 Jul 15.

Abstract

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.

摘要

多种突变对蛋白质功能的综合影响难以预测;因此,能够对大量蛋白质序列变体进行功能评估,对于蛋白质工程来说是非常实用的。在这里,我们提出了一个高通量的平台,可以对具有组合修饰的条形码蛋白质变体进行可扩展的组装和并行表征。我们通过系统地表征广泛使用的化脓性链球菌 Cas9(SpCas9)核酸酶的 948 种组合突变体文库,来展示这个名为 CombiSEAL 的平台,以优化其在人类细胞中的基因组编辑活性。在多个靶标和脱靶位点评估 SpCas9 变体池的编辑活性的简便性,加速了优化变体的鉴定,并促进了突变上位性的研究。我们成功地鉴定出了 Opti-SpCas9,它在不牺牲效力和广泛靶向范围的情况下,提高了编辑特异性。这个平台通过组合修饰,大规模地应用于蛋白质工程。

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