含氮化合物对链霉菌次级代谢的影响--代谢工程策略的源泉

SynBio Pub Date : 2023-11-16 DOI:10.3390/synbio1030015
Sergii Krysenko
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引用次数: 0

摘要

链霉菌属放线菌具有复杂的初级和次级代谢、发育周期以及生产多种天然产品的能力。这些土壤细菌是抗生素和其他生物活性化合物的主要生产者,由于链霉菌衍生的次级代谢产物在医学和工业上的相关性,它们已被广泛研究。然而,链霉菌工程的基因工具箱以及生产相关代谢物的产量优化策略都很有限。一方面,由于许多 "沉默 "或表达不清的生物合成基因簇,其激活取决于环境刺激和养分供应,这些生物的遗传潜力尚未得到充分利用。另一方面,这些富含 GC 的革兰氏阳性细菌难以操纵,传统的基因操纵策略耗时长、效率低。最近对链霉菌新陈代谢和基因组的研究为克服这些挑战提供了新的思路。本综述讨论了链霉菌操纵和次生代谢物生产优化的进展和方法。特别重点是了解链霉菌初级代谢和次级代谢之间的相互作用,以及含氮化合物在次级代谢中的供应。综述了操纵链霉菌细胞代谢的现有策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Nitrogen-Containing Compounds on Secondary Metabolism in Streptomyces spp.—A Source of Metabolic Engineering Strategies
Actinobacteria from the genus Streptomyces feature complex primary and secondary metabolism, developmental cycle, and ability to produce a variety of natural products. These soil bacteria are major producers of antibiotics and other bioactive compounds and have been extensively investigated due to the medical and industrial relevance of Streptomyces-derived secondary metabolites. However, the genetic toolbox for Streptomyces engineering as well as yield optimization strategies for the production of relevant metabolites are limited. On the one hand, the genetic potential of these organisms has not been fully utilized due to many “silent” or poorly expressed biosynthetic gene clusters, whose activation depends on environmental stimuli and nutrient availability. On the other hand, these GC-rich Gram-positive bacteria are difficult to manipulate, and traditional genetic manipulation strategies are time-consuming and have low efficiency. Recent studies of Streptomyces metabolism and genomes provided new insights into possibilities to overcome these challenges. In this review, advances and approaches for Streptomyces manipulations and secondary metabolite production optimization are discussed. Special focus is given to understanding the interplay between primary and secondary metabolism in Streptomyces and the supply of nitrogen-containing compounds into secondary metabolism. Existing strategies to manipulate cellular metabolism in Streptomyces are reviewed.
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