大肠杆菌
鉴定(生物学)
突变体
生物化学
核糖开关
苏氨酸
代谢工程
高通量筛选
酶
生物
计算生物学
基因
核糖核酸
丝氨酸
非编码RNA
植物
作者
Buli Su,Peixuan Lai,Ming‐Rong Deng,Honghui Zhu
标识
DOI:10.1016/j.biortech.2024.130407
摘要
L-threonine is a crucial amino acid that is extensively employed in the realms of food, animal feed and pharmaceuticals. Unfortunately, the lack of an appropriate biosensor has hindered the establishment of a robust high-throughput screening (HTS) system for the identification of the desired strains from random mutants. In this study, a dual-responding genetic circuit that capitalizes on the L-threonine inducer-like effect, the L-threonine riboswitch, and a signal amplification system was designed for the purpose of screening L-threonine overproducers. This platform effectively enhanced the performance of the enzyme and facilitated the identification of high L-threonine-producing strains from a random mutant library. Consequently, pathway optimization and directed evolution of the key enzyme enhanced L-threonine production by 4 and 7-fold, respectively. These results demonstrate the potential of biosensor design for dynamic metabolite detection and offer a promising tool for HTS and metabolic regulation for the development of L-threonine-hyperproducing strains.
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