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一种基于流式细胞术的蛋白酶定向进化筛选系统。

A flow cytometry-based screening system for directed evolution of proteases.

作者信息

Tu Ran, Martinez Ronny, Prodanovic Radivoje, Klein Mathias, Schwaneberg Ulrich

机构信息

School of Engineering and Science, Jacobs University Bremen (JUB), Bremen, Germany.

出版信息

J Biomol Screen. 2011 Mar;16(3):285-94. doi: 10.1177/1087057110396361. Epub 2011 Feb 18.

Abstract

Proteases are industrially important enzymes but often have to be improved for their catalytic efficiency and stabilities to suit applications. Flow cytometry screening technology based on in vitro compartmentalization in double emulsion had been developed and applied on directed evolution of paraoxonase and β-galactosidase. Further advancements of flow cytometry-based screening technologies will enable an ultra-high throughput of variants offering novel opportunities in directed enzyme evolution under high mutational loads. For the industrially important enzyme class of proteases, a first flow cytometry-based screening system for directed protease evolution has been developed based on an extracellular protease-deficient Bacillus subtilis strain (WB800N), a model protease (subtilisin Carlsberg), and a water-in-oil-in-water double-emulsion technology. B. subtilis WB800N cells are encapsulated in double emulsion with a fluorogenic substrate (rhodamine 110-containing peptide), allowing the screening of protease variants in femtoliter compartments at high throughput. The protease screening technology was validated by employing an epPCR mutant library with a high mutational load and screened for increased resistance toward the inhibitor antipain dihydrochloride. A variant (K127R, T237P, M239I, I269V, Y310F, I372V) with an improved relative resistance was isolated from a small population of active variants, validating the reported protease flow cytometry screening technology for increased inhibitor resistance.

摘要

蛋白酶是具有重要工业价值的酶,但通常需要提高其催化效率和稳定性以适应应用需求。基于双乳液体外分隔的流式细胞术筛选技术已被开发出来,并应用于对氧磷酶和β-半乳糖苷酶的定向进化。基于流式细胞术的筛选技术的进一步发展将实现超高通量的变体筛选,为在高突变负荷下的定向酶进化提供新的机会。对于具有重要工业价值的蛋白酶类,基于细胞外蛋白酶缺陷型枯草芽孢杆菌菌株(WB800N)、模型蛋白酶(枯草杆菌蛋白酶卡尔伯格)和水包油包水双乳液技术,开发了首个基于流式细胞术的蛋白酶定向进化筛选系统。枯草芽孢杆菌WB800N细胞被包裹在含有荧光底物(含罗丹明110的肽)的双乳液中,从而能够在飞升级别的隔室中高通量筛选蛋白酶变体。通过使用具有高突变负荷的易错PCR突变文库对蛋白酶筛选技术进行了验证,并筛选出对抑制剂盐酸抗痛素具有更高抗性的变体。从一小部分活性变体中分离出了一个相对抗性得到改善的变体(K127R、T237P、M239I、I269V、Y310F、I372V),验证了所报道的用于提高抑制剂抗性的蛋白酶流式细胞术筛选技术。

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