Institute for Frontier Life and Medical Sciences, Kyoto University, Kyoto, Japan.
Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto, Japan.
J Biol Chem. 2021 Jan-Jun;296:100673. doi: 10.1016/j.jbc.2021.100673. Epub 2021 Apr 16.
Escherichia coli RseP, a member of the site-2 protease family of intramembrane proteases, is involved in the activation of the σ extracytoplasmic stress response and elimination of signal peptides from the cytoplasmic membrane. However, whether RseP has additional cellular functions is unclear. In this study, we used mass spectrometry-based quantitative proteomic analysis to search for new substrates that might reveal unknown physiological roles for RseP. Our data showed that the levels of several Fec system proteins encoded by the fecABCDE operon (fec operon) were significantly decreased in an RseP-deficient strain. The Fec system is responsible for the uptake of ferric citrate, and the transcription of the fec operon is controlled by FecI, an alternative sigma factor, and its regulator FecR, a single-pass transmembrane protein. Assays with a fec operon expression reporter demonstrated that the proteolytic activity of RseP is essential for the ferric citrate-dependent upregulation of the fec operon. Analysis using the FecR protein and FecR-derived model proteins showed that FecR undergoes sequential processing at the membrane and that RseP participates in the last step of this sequential processing to generate the N-terminal cytoplasmic fragment of FecR that participates in the transcription of the fec operon with FecI. A shortened FecR construct was not dependent on RseP for activation, confirming this cleavage step is the essential and sufficient role of RseP. Our study unveiled that E. coli RseP performs the intramembrane proteolysis of FecR, a novel physiological role that is essential for regulating iron uptake by the ferric citrate transport system.
大肠杆菌 RseP 是一种位于膜内的蛋白酶家族的位点 2 蛋白酶,它参与σ细胞外应激反应的激活和细胞质膜信号肽的去除。然而,RseP 是否具有其他细胞功能尚不清楚。在这项研究中,我们使用基于质谱的定量蛋白质组学分析来寻找新的底物,这些底物可能揭示 RseP 的未知生理作用。我们的数据显示,fecABCDE 操纵子(fec 操纵子)编码的几个 Fec 系统蛋白的水平在 RseP 缺陷菌株中显著降低。Fec 系统负责摄取柠檬酸铁,fec 操纵子的转录由 FecI 控制,FecI 是一种替代σ因子,其调节剂 FecR 是一种单通道跨膜蛋白。使用 fec 操纵子表达报告基因的测定表明,RseP 的蛋白水解活性对于柠檬酸铁依赖性上调 fec 操纵子是必不可少的。使用 FecR 蛋白和源自 FecR 的模型蛋白的分析表明,FecR 在膜上经历连续加工,RseP 参与此连续加工的最后一步,生成参与 FecI 转录的 FecR 的 N 端细胞质片段。缩短的 FecR 构建体不依赖于 RseP 进行激活,这证实了这种切割步骤是 RseP 的必要和充分作用。我们的研究揭示了大肠杆菌 RseP 对 FecR 进行膜内蛋白水解,这是一种调节柠檬酸铁转运系统铁摄取的新的生理作用。