Departamento de Biotecnología Microbiana, Centro Nacional de Biotecnología, CSIC, Madrid, Spain.
Departamento de Microbiología y Parasitología, Facultad de Farmacia, Universidad Complutense de Madrid and Instituto Ramón y Cajal de Investigaciones Sanitarias (IRYCIS), Madrid, Spain.
Sci Rep. 2018 Nov 14;8(1):16793. doi: 10.1038/s41598-018-34741-9.
Bacterial physiology is regulated at different levels, from mRNA synthesis to translational regulation and protein modification. Herein, we propose a parameter, dubbed post-transcriptional variation (PTV), that allows extracting information on post-transcriptional regulation from the combined analysis of transcriptomic and proteomic data. We have applied this parameter for getting a deeper insight in the regulon of the Pseudomonas aeruginosa post-transcriptional regulator Crc. P. aeruginosa is a free-living microorganism, and part of its ecological success relies on its capability of using a large number of carbon sources. The hierarchical assimilation of these sources when present in combination is regulated by Crc that, together with Hfq (the RNA-binding chaperon in the complex), impedes their translation when catabolite repression is triggered. Most studies on Crc regulation are based either in transcriptomics or in proteomics data, which cannot provide information on post-transcriptional regulation when analysed independently. Using the PTV parameter, we present a comprehensive map of the Crc post-transcriptional regulon. In addition of controlling the use of primary and secondary carbon sources, Crc regulates as well cell respiration, c-di-GMP mediated signalling, and iron utilization. Thus, besides controlling the hyerarchical assimilation of carbon sources, Crc is an important element for keeping bacterial homeostasis and, consequently, metabolic robustness.
细菌生理学在不同层面受到调节,从 mRNA 合成到翻译调控和蛋白质修饰。在此,我们提出了一个参数,称为转录后变化(PTV),它允许从转录组和蛋白质组数据的综合分析中提取转录后调控的信息。我们已经应用此参数更深入地了解铜绿假单胞菌转录后调控因子 Crc 的调控组。铜绿假单胞菌是一种自由生活的微生物,其生态成功的一部分依赖于其利用大量碳源的能力。当这些来源同时存在时,它们的分层同化受到 Crc 的调节,Crc 与 Hfq(复合物中的 RNA 结合伴侣)一起,在分解代谢抑制被触发时阻止它们的翻译。大多数关于 Crc 调控的研究都是基于转录组学或蛋白质组学数据,这些数据在独立分析时无法提供关于转录后调控的信息。使用 PTV 参数,我们展示了 Crc 转录后调控组的综合图谱。除了控制主要和次要碳源的利用外,Crc 还调节细胞呼吸、c-di-GMP 介导的信号转导和铁利用。因此,除了控制碳源的分层同化外,Crc 还是维持细菌内稳态的重要因素,从而保持代谢稳健性。