Vecerek Branislav, Moll Isabella, Bläsi Udo
Department of Microbiology and Immunobiology, Max F Perutz Laboratories, University of Vienna, Vienna, Austria.
EMBO J. 2007 Feb 21;26(4):965-75. doi: 10.1038/sj.emboj.7601553. Epub 2007 Feb 1.
The Fe2+-dependent Fur protein serves as a negative regulator of iron uptake in bacteria. As only metallo-Fur acts as an autogeneous repressor, Fe2+scarcity would direct fur expression when continued supply is not obviously required. We show that in Escherichia coli post-transcriptional regulatory mechanisms ensure that Fur synthesis remains steady in iron limitation. Our studies revealed that fur translation is coupled to that of an upstream open reading frame (uof), translation of which is downregulated by the non-coding RNA (ncRNA) RyhB. As RyhB transcription is negatively controlled by metallo-Fur, iron depletion creates a negative feedback loop. RyhB-mediated regulation of uof-fur provides the first example for indirect translational regulation by a trans-encoded ncRNA. In addition, we present evidence for an iron-responsive decoding mechanism of the uof-fur entity. It could serve as a backup mechanism of the RyhB circuitry, and represents the first link between iron availability and synthesis of an iron-containing protein.
依赖Fe2+的Fur蛋白作为细菌中铁摄取的负调节因子。由于只有金属化的Fur作为自身阻遏物,在明显不需要持续供应时,Fe2+缺乏会指导fur的表达。我们表明,在大肠杆菌中,转录后调控机制确保在铁限制条件下Fur的合成保持稳定。我们的研究表明,fur的翻译与上游开放阅读框(uof)的翻译偶联,uof的翻译受到非编码RNA(ncRNA)RyhB的下调。由于RyhB的转录受到金属化Fur的负调控,铁耗竭产生了一个负反馈环。RyhB介导的uof-fur调控为反式编码ncRNA的间接翻译调控提供了首个例子。此外,我们提供了uof-fur实体的铁响应解码机制的证据。它可以作为RyhB调控回路的备用机制,并且代表了铁可用性与含铁蛋白合成之间的首个联系。