Vicente Cláudia M, Payero Tamara D, Rodríguez-García Antonio, Barreales Eva G, de Pedro Antonio, Santos-Beneit Fernando, Aparicio Jesús F
Department of Molecular Biology, Area of Microbiology, Faculty of Biology, Universidad de León, 24071 León, Spain.
Institute of Biotechnology INBIOTEC, Parque Científico de León, Avda. Real, No 1, 24006 León, Spain.
Antibiotics (Basel). 2022 Jul 24;11(8):994. doi: 10.3390/antibiotics11080994.
PAS-LuxR transcriptional regulators are conserved proteins governing polyene antifungal biosynthesis. PteF is the regulator of filipin biosynthesis from . Its mutation drastically abates filipin, but also oligomycin production, a macrolide ATP-synthase inhibitor, and delays sporulation; thus, it has been considered a transcriptional activator. Transcriptomic analyses were performed in D and its parental strain. Both strains were grown in a YEME medium without sucrose, and the samples were taken at exponential and stationary growth phases. A total of 257 genes showed an altered expression in the mutant, most of them at the exponential growth phase. Surprisingly, despite PteF being considered an activator, most of the genes affected showed overexpression, thereby suggesting a negative modulation. The affected genes were related to various metabolic processes, including genetic information processing; DNA, energy, carbohydrate, and lipid metabolism; morphological differentiation; and transcriptional regulation, among others, but were particularly related to secondary metabolite biosynthesis. Notably, 10 secondary metabolite gene clusters out of the 38 encoded by the genome showed altered expression profiles in the mutant, suggesting a regulatory role for PteF that is wider than expected. The transcriptomic results were validated by quantitative reverse-transcription polymerase chain reaction. These findings provide important clues to understanding the intertwined regulatory machinery that modulates antibiotic biosynthesis in .
PAS-LuxR转录调节因子是控制多烯抗真菌生物合成的保守蛋白。PteF是来自……的制霉菌素生物合成的调节因子。其突变极大地减少了制霉菌素的产生,但也减少了寡霉素的产生,寡霉素是一种大环内酯ATP合酶抑制剂,并延迟了孢子形成;因此,它被认为是一种转录激活因子。在……及其亲本菌株中进行了转录组分析。两种菌株均在不含蔗糖的YEME培养基中生长,并在指数生长期和稳定生长期取样。共有257个基因在突变体中表达发生改变,其中大多数在指数生长期。令人惊讶的是,尽管PteF被认为是一种激活因子,但大多数受影响的基因却表现出过表达,从而表明其具有负调控作用。受影响的基因与各种代谢过程有关,包括遗传信息处理;DNA、能量、碳水化合物和脂质代谢;形态分化;转录调控等,但特别与次级代谢物生物合成有关。值得注意的是,基因组编码的38个次级代谢物基因簇中有10个在突变体中表现出改变的表达谱,这表明PteF的调节作用比预期的更广泛。转录组结果通过定量逆转录聚合酶链反应得到验证。这些发现为理解调节……中抗生素生物合成的复杂调控机制提供了重要线索。