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Directed Evolution of Proteins through In Vitro Protein Synthesis in Liposomes

机译:通过脂质体内蛋白质的体外合成指导蛋白质的进化

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摘要

Directed evolution of proteins is a technique used to modify protein functions through “Darwinian selection.” In vitro compartmentalization (IVC) is an in vitro gene screening system for directed evolution of proteins. IVC establishes the link between genetic information (genotype) and the protein translated from the information (phenotype), which is essential for all directed evolution methods, by encapsulating both in a nonliving microcompartment. Herein, we introduce a new liposome-based IVC system consisting of a liposome, the protein synthesis using recombinant elements (PURE) system and a fluorescence-activated cell sorter (FACS) used as a microcompartment, in vitro protein synthesis system, and high-throughput screen, respectively. Liposome-based IVC is characterized by in vitro protein synthesis from a single copy of a gene in a cell-sized unilamellar liposome and quantitative functional evaluation of the synthesized proteins. Examples of liposome-based IVC for screening proteins such as GFP and β-glucuronidase are described. We discuss the future directions for this method and its applications.
机译:蛋白质的定向进化是一种通过“达尔文选择”来修饰蛋白质功能的技术。体外区室化(IVC)是用于蛋白质定向进化的体外基因筛选系统。 IVC通过将两者封装在无生命的微区室中,从而在遗传信息(基因型)和从信息翻译的蛋白质(表型)之间建立了联系,这对于所有定向进化方法都是必不可少的。在此,我们介绍了一种新的基于脂质体的IVC系统,该系统由脂质体,使用重组元件(PURE)系统进行的蛋白质合成和用作微区室的荧光激活细胞分选仪(FACS),体外蛋白质合成系统以及吞吐量屏幕。基于脂质体的IVC的特征在于,从细胞大小的单层脂质体中的单个基因拷贝进行体外蛋白质合成,并对合成的蛋白质进行定量功能评估。描述了用于筛选诸如GFP和β-葡糖醛酸糖苷酶的蛋白质的基于脂质体的IVC的实例。我们讨论该方法及其应用的未来方向。

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