Martínez-Burgo Yolanda, Santos-Aberturas Javier, Rodríguez-García Antonio, Barreales Eva G, Tormo José Rubén, Truman Andrew W, Reyes Fernando, Aparicio Jesús F, Liras Paloma
Microbiology Section, Department of Molecular Biology, University of León, León, Spain.
Department of Molecular Microbiology, John Innes Centre, Norwich, United Kingdom.
Front Microbiol. 2019 Mar 26;10:580. doi: 10.3389/fmicb.2019.00580. eCollection 2019.
Expression of non-native transcriptional activators may be a powerful general method to activate secondary metabolites biosynthetic pathways. PAS-LuxR regulators, whose archetype is PimM, activate the biosynthesis of polyene macrolide antifungals and other antibiotics, and have been shown to be functionally preserved across multiple strains. In this work we show that constitutive expression of in ATCC 27064 significantly affected its transcriptome and modifies secondary metabolism. Almost all genes in three secondary metabolite clusters were overexpressed, including the clusters responsible for the biosynthesis of the clinically important clavulanic acid and cephamycin C. In comparison to a control strain, this resulted in 10- and 7-fold higher production levels of these metabolites, respectively. Metabolomic and bioactivity studies of also revealed deep metabolic changes. Antifungal activity absent in the control strain was detected in , and determined to be the result of a fivefold increase in the production of the tunicamycin complex.
非天然转录激活因子的表达可能是激活次级代谢产物生物合成途径的一种强大通用方法。以PimM为原型的PAS-LuxR调控因子可激活多烯大环内酯类抗真菌剂和其他抗生素的生物合成,并且已证明在多个菌株中功能保守。在这项工作中,我们表明在ATCC 27064中组成型表达显著影响其转录组并改变次级代谢。三个次级代谢产物簇中的几乎所有基因均过表达,包括负责临床上重要的克拉维酸和头孢霉素C生物合成的簇。与对照菌株相比,这分别导致这些代谢产物的产量水平提高了10倍和7倍。对的代谢组学和生物活性研究也揭示了深刻的代谢变化。在对照菌株中不存在的抗真菌活性在中被检测到,并确定是衣霉素复合物产量增加五倍的结果。