通过体内持续进化增强细胞和酶的特性。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Weiran Chu, Yaxin Guo, Yaokang Wu, Xueqin Lv, Jianghua Li, Long Liu, Guocheng Du, Jian Chen, Yanfeng Liu
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引用次数: 0

摘要

定向进化旨在以远远超过自然突变率的速度进化目标基因,从而赋予细胞和酶的特性以所需的特征。体内连续定向进化通过在活细胞内生成文库,实现突变体生成和选择的连续循环,加强对基因变体的探索,从而达到上述目的。持续进化已成为揭示进化机制、改善细胞和酶特性的有力工具。本综述将目前的连续进化分为三类:非靶向染色体、靶向染色体和染色体外超突变方法。它还比较了基于不同原理的各种连续进化策略,为针对特定进化目标选择合适的方法提供参考。此外,本综述还讨论了体内连续进化进一步广泛应用的两个主要限制,即缺乏普遍适用性和诱变能力不足。我们认为,开发普遍适用的诱变成分和提高体内连续进化突变率的方法,是连续进化广泛应用的未来发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing Cellular and Enzymatic Properties Through In Vivo Continuous Evolution.

Directed evolution seeks to evolve target genes at a rate far exceeding the natural mutation rate, thereby endowing cellular and enzymatic properties with desired traits. In vivo continuous directed evolution achieves these purposes by generating libraries within living cells, enabling a continuous cycle of mutant generation and selection, enhancing the exploration of gene variants. Continuous evolution has become powerful tools for unraveling evolution mechanism and improving cellular and enzymatic properties. This review categorizes current continuous evolution into three distinct classes: non-targeted chromosomal, targeted chromosomal, and extra-chromosomal hypermutation approaches. It also compares various continuous evolution strategies based on different principles, providing a reference for selecting suitable methods for specific evolutionary goals. Furthermore, this review discusses the two primary limitations for further widespread application of in vivo continuous evolution, which are lack of general applicability and insufficient mutagenic capability. We envision that developing generally applicable mutagenic components and methods to enhance mutation rates for in vivo continuous evolution are promising future directions for wide range applications of continuous evolution.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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