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基于工程色氨酸生物传感器的动态调控紫胶红色素生产。

Engineering of -Based Tryptophan Biosensors for Dynamic Control of Violacein Production.

机构信息

College of Agronomy and Biotechnology, Southwest University, Chongqing 400715, China.

Chongqing Key Laboratory of Scientific Utilization of Tobacco Resources, China Tobacco Chongqing Industrial Co., Ltd., Chongqing 400060, China.

出版信息

J Agric Food Chem. 2024 Nov 6;72(44):24668-24676. doi: 10.1021/acs.jafc.4c07638. Epub 2024 Oct 23.

DOI:10.1021/acs.jafc.4c07638
PMID:39440815
Abstract

Tryptophan not only serves as a fundamental building block for protein synthesis but also acts as a metabolic precursor for a diverse array of high-value chemicals. Although a few tryptophan-responsive biosensors are currently available, there is a growing interest in developing high-performance biosensors. In this study, we create a miniature toolkit of tryptophan biosensors based upon the leader regulatory region of the operon, which is responsible for tryptophan catabolism in . Four variants are generated by engineering the leader sequence, which encodes a leader peptide composed of 24 amino acid residues. Subsequently, the performance of both the natural sequence and its engineered variants is assessed in a reporter strain based on the MazEF toxin-antitoxin system. The results demonstrate that two engineered variants exhibit increased sensitivity to low levels of tryptophan. Moreover, the engineered biosensors are further optimized by replacing the native promoter of with a phage-derived constitutive promoter. Intriguingly, the engineered biosensors can be reconstructed for extended application in , a robust microbial chassis for metabolic engineering. In summary, our study expands the toolkit of tryptophan biosensors that can be broadly used for the bioproduction of many other high-value tryptophan-derived products.

摘要

色氨酸不仅是蛋白质合成的基本结构单元,还是多种高价值化学物质的代谢前体。尽管目前已有一些色氨酸响应生物传感器,但人们对开发高性能生物传感器的兴趣日益浓厚。在这项研究中,我们基于操纵子的启动子调控区创建了一个小型的色氨酸生物传感器工具包,该操纵子负责色氨酸的分解代谢。通过工程改造编码由 24 个氨基酸残基组成的前导肽的 启动子序列,生成了四个变体。随后,在基于 MazEF 毒素-抗毒素系统的报告菌株中评估了天然 序列及其工程变体的性能。结果表明,两种工程变体对低水平色氨酸的敏感性增强。此外,通过用噬菌体衍生的组成型启动子替换 的天然启动子,进一步优化了工程生物传感器。有趣的是,通过重建工程生物传感器,可以将其扩展应用于 ,这是代谢工程中一个强大的微生物底盘。总之,我们的研究扩展了色氨酸生物传感器的工具包,可广泛用于许多其他高价值色氨酸衍生产品的生物生产。

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