Zhao Xinqing, Jiang Rujiao, Bai Fengwu
Department of Bioscience and Bioengineering, Dalian University of Technology, Dalian 116024, China.
Sheng Wu Gong Cheng Xue Bao. 2009 Sep;25(9):1312-5.
Directed evolution, which is also called molecular evolution, or artificial evolution, combines random mutagenesis and directed selection. In previous studies, it has been extensively applied for the improvement of enzyme catalytic properties and stability, as well as the expanding of substrate specificity. In recent years, directed evolution was also employed in metabolic engineering of promoters for improving their strength and function, and the engineering of global transcription machinery. These techniques contribute to breeding more tolerant strains against environmental stress, as well as strains with improved fermentation efficiency. In this article, we reviewed the applications of directed evolution in the metabolic engineering of promoters and global transcription machinery. These techniques enabled fine-tuning of gene expression and simultaneous alternation of multiple gene transcription inside the cells, and thus are powerful new tools for metabolic engineering.
定向进化,也被称为分子进化或人工进化,它结合了随机诱变和定向选择。在以往的研究中,它已被广泛应用于改善酶的催化特性和稳定性,以及扩大底物特异性。近年来,定向进化还被用于启动子的代谢工程,以提高其强度和功能,以及全局转录机制的工程改造。这些技术有助于培育出对环境压力更具耐受性的菌株,以及发酵效率更高的菌株。在本文中,我们综述了定向进化在启动子和全局转录机制的代谢工程中的应用。这些技术能够对基因表达进行微调,并同时改变细胞内多个基因的转录,因此是代谢工程中强大的新工具。