Max Perutz Labs, Vienna Biocenter Campus (VBC), Vienna, Austria.
Max Perutz Labs, Department of Microbiology, Immunobiology and Genetics, University of Vienna, Vienna, Austria.
Mol Microbiol. 2024 Jul;122(1):11-28. doi: 10.1111/mmi.15280. Epub 2024 May 21.
The rpoN operon, an important regulatory hub in Enterobacteriaceae, includes rpoN encoding sigma factor σ, hpf involved in ribosome hibernation, rapZ regulating glucosamine-6-phosphate levels, and two genes encoding proteins of the nitrogen-related phosphotransferase system. Little is known about regulatory mechanisms controlling the abundance of these proteins. This study employs transposon mutagenesis and chemical screens to dissect the complex expression of the rpoN operon. We find that envelope stress conditions trigger read-through transcription into the rpoN operon from a promoter located upstream of the preceding lptA-lptB locus. This promoter is controlled by the envelope stress sigma factor E and response regulator PhoP is required for its full response to a subset of stress signals. σ also stimulates ptsN-rapZ-npr expression using an element downstream of rpoN, presumably by interfering with mRNA processing by RNase E. Additionally, we identify a novel promoter in the 3' end of rpoN that directs transcription of the distal genes in response to ethanol. Finally, we show that translation of hpf and ptsN is individually regulated by the RNA chaperone Hfq, perhaps involving small RNAs. Collectively, our work demonstrates that the rpoN operon is subject to complex regulation, integrating signals related to envelope stress and carbon source quality.
rpoN 操纵子是肠杆菌科的一个重要调控枢纽,包含编码 sigma 因子 σ 的 rpoN、参与核糖体休眠的 hpf、调节葡萄糖胺-6-磷酸水平的 rapZ,以及两个编码氮相关磷酸转移酶系统蛋白的基因。关于控制这些蛋白质丰度的调控机制知之甚少。本研究采用转座子诱变和化学筛选来剖析 rpoN 操纵子的复杂表达。我们发现,包膜应激条件触发了从位于 lptA-lptB 位点上游的启动子到 rpoN 操纵子的通读转录。该启动子由包膜应激 sigma 因子 E 控制,PhoP 响应调节剂是其对一组应激信号的完全响应所必需的。σ 还通过干扰 RNase E 的 mRNA 加工,使用 rpoN 下游的元件来刺激 ptsN-rapZ-npr 的表达。此外,我们在 rpoN 的 3'端鉴定出一个新的启动子,该启动子响应乙醇诱导转录远端基因。最后,我们表明 hpf 和 ptsN 的翻译分别受到 RNA 伴侣 Hfq 的调控,可能涉及小 RNA。总的来说,我们的工作表明 rpoN 操纵子受到复杂的调控,整合了与包膜应激和碳源质量相关的信号。