Institute of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, United Kingdom.
Mol Cell Proteomics. 2012 Feb;11(2):M111.013797. doi: 10.1074/mcp.M111.013797. Epub 2011 Dec 6.
Bacteria in the genus Streptomyces are soil-dwelling oligotrophs and important producers of secondary metabolites. Previously, we showed that global messenger RNA expression was subject to a series of metabolic and regulatory switches during the lifetime of a fermentor batch culture of Streptomyces coelicolor M145. Here we analyze the proteome from eight time points from the same fermentor culture and, because phosphate availability is an important regulator of secondary metabolite production, compare this to the proteome of a similar time course from an S. coelicolor mutant, INB201 (ΔphoP), defective in the control of phosphate utilization. The proteomes provide a detailed view of enzymes involved in central carbon and nitrogen metabolism. Trends in protein expression over the time courses were deduced from a protein abundance index, which also revealed the importance of stress pathway proteins in both cultures. As expected, the ΔphoP mutant was deficient in expression of PhoP-dependent genes, and several putatively compensatory metabolic and regulatory pathways for phosphate scavenging were detected. Notably there is a succession of switches that coordinately induce the production of enzymes for five different secondary metabolite biosynthesis pathways over the course of the batch cultures.
链霉菌属中的细菌是土壤中的寡营养生物,也是次生代谢物的重要生产者。此前,我们发现链霉菌属的发酵罐分批培养过程中,全局信使 RNA 表达受到一系列代谢和调控开关的影响。在这里,我们分析了来自同一发酵罐培养的八个时间点的蛋白质组,并由于磷酸盐的可用性是次生代谢物生产的重要调节剂,我们将其与链霉菌属突变株 INB201(ΔphoP)的蛋白质组进行了比较,该突变株在磷酸盐利用的控制中存在缺陷。蛋白质组提供了参与中心碳和氮代谢的酶的详细视图。通过蛋白质丰度指数推导出了蛋白质表达随时间的趋势,该指数还揭示了两种培养物中应激途径蛋白的重要性。如预期的那样,ΔphoP 突变体中 PhoP 依赖性基因的表达不足,并且检测到了几种用于磷酸盐摄取的潜在补偿代谢和调节途径。值得注意的是,在分批培养过程中,会有一系列协同诱导五种不同次生代谢物生物合成途径的酶的产生的开关。