Progresses in Cell-Free In Vitro Evolution.

4区 工程技术 Q2 Biochemistry, Genetics and Molecular Biology Advances in biochemical engineering/biotechnology Pub Date : 2023-01-01 DOI:10.1007/10_2023_219
Kaito Seo, Katsumi Hagino, Norikazu Ichihashi
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Abstract

Biopolymers, such as proteins and RNA, are integral components of living organisms and have evolved through a process of repeated mutation and selection. The technique of "cell-free in vitro evolution" is a powerful experimental approach for developing biopolymers with desired functions and structural properties. Since Spiegelman's pioneering work over 50 years ago, biopolymers with a wide range of functions have been developed using in vitro evolution in cell-free systems. The use of cell-free systems offers several advantages, including the ability to synthesize a wider range of proteins without the limitations imposed by cytotoxicity, and the capacity for higher throughput and larger library sizes than cell-based evolutionary experiments. In this chapter, we provide a comprehensive overview of the progress made in the field of cell-free in vitro evolution by categorizing evolution into directed and undirected. The biopolymers produced by these methods are valuable assets in medicine and industry, and as a means of exploring the potential of biopolymers.

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无细胞体外进化的进展。
生物聚合物,如蛋白质和RNA,是生物体不可或缺的组成部分,通过反复突变和选择的过程进化而来。“无细胞体外进化”技术是开发具有所需功能和结构特性的生物聚合物的一种强大的实验方法。自从50多年前Spiegelman的开创性工作以来,在无细胞系统中利用体外进化开发出了具有广泛功能的生物聚合物。无细胞系统的使用提供了几个优势,包括在不受细胞毒性限制的情况下合成更广泛蛋白质的能力,以及比基于细胞的进化实验具有更高吞吐量和更大文库大小的能力。在本章中,我们通过将进化分为定向进化和无定向进化,全面概述了无细胞体外进化领域的进展。通过这些方法生产的生物聚合物是医学和工业中的宝贵资产,也是探索生物聚合物潜力的一种手段。
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来源期刊
Advances in biochemical engineering/biotechnology
Advances in biochemical engineering/biotechnology 工程技术-生物工程与应用微生物
CiteScore
5.70
自引率
0.00%
发文量
29
期刊介绍: Advances in Biochemical Engineering/Biotechnology reviews actual trends in modern biotechnology. Its aim is to cover all aspects of this interdisciplinary technology where knowledge, methods and expertise are required for chemistry, biochemistry, microbiology, genetics, chemical engineering and computer science. Special volumes are dedicated to selected topics which focus on new biotechnological products and new processes for their synthesis and purification. They give the state-of-the-art of a topic in a comprehensive way thus being a valuable source for the next 3 - 5 years. It also discusses new discoveries and applications.
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