无细胞定向进化在超高通量微滴中的蛋白酶。

Cell-free Directed Evolution of a Protease in Microdroplets at Ultrahigh Throughput.

机构信息

Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge, CB2 1GA, U.K.

出版信息

ACS Synth Biol. 2021 Feb 19;10(2):252-257. doi: 10.1021/acssynbio.0c00538. Epub 2021 Jan 27.

Abstract

Compartmentalization of single genes in water-in-oil emulsion droplets is a powerful approach to create millions of reactors for enzyme library selections. When these droplets are formed at ultrahigh throughput in microfluidic devices, their perfect monodispersity allows quantitative enzyme assays with a high precision readout. However, despite its potential for high quality cell-free screening experiments, previous demonstrations of enrichment have never been successfully followed up by actual enzyme library selections in monodisperse microfluidic droplets. Here we develop a three-step workflow separating three previously incompatible steps that thus far could not be carried out at once: first droplet-compartmentalized DNA is amplified by rolling circle amplification; only after completion of this step are reagents for protein expression and, finally, substrate added via picoinjection. The segmented workflow is robust enough to allow the first evolution in droplets, improving the protease Savinase that is toxic to for higher activity and identifying a 5-fold faster enzyme.

摘要

在油包水乳液液滴中对单个基因进行分区是一种创建数百万个酶库选择反应器的强大方法。当这些液滴在微流控设备中以超高通量形成时,其完美的单分散性允许进行具有高精度读数的定量酶分析。然而,尽管其具有用于无细胞筛选实验的高质量潜力,但以前的富集演示从未成功地在单分散微流控液滴中进行实际的酶文库选择。在这里,我们开发了一个三步工作流程,将三个以前不兼容的步骤分开,迄今为止,这些步骤不能同时进行:首先通过滚环扩增对液滴分隔的 DNA 进行扩增;只有在完成此步骤之后,才通过皮升级注射添加用于蛋白质表达的试剂,最后是底物。分段工作流程足够稳健,可以允许在液滴中进行首次进化,提高对蛋白酶 Savinase 的活性,该蛋白酶对有毒性,使其活性提高 5 倍,并鉴定出一种酶活性提高 5 倍的酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9a8/7901014/c66f06c20d5b/sb0c00538_0001.jpg

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