School of Natural and Computational Sciences, Massey University at Albany, Auckland 0745, New Zealand.
Nucleic Acids Res. 2021 Apr 6;49(6):3204-3216. doi: 10.1093/nar/gkab091.
Autoactivation of two-component systems (TCSs) can increase the sensitivity to signals but inherently cause a delayed response. Here, we describe a unique negative feedback mechanism enabling the global NtrB/NtrC regulator to rapidly respond to nitrogen starvation over the course of histidine utilization (hut) in Pseudomonas fluorescens. NtrBC directly activates transcription of hut genes, but overexpression will produce excess ammonium leading to NtrBC inactivation. To prevent this from occurring, the histidine-responsive repressor HutC fine-tunes ntrBC autoactivation: HutC and NtrC bind to the same operator site in the ntrBC promoter. This newly discovered low-affinity binding site shows little sequence similarity with the consensus sequence that HutC recognizes for substrate-specific induction of hut operons. A combination of genetic and transcriptomic analysis indicated that both ntrBC and hut promoter activities cannot be stably maintained in the ΔhutC background when histidine fluctuates at high concentrations. Moreover, the global carbon regulator CbrA/CbrB is involved in directly activating hut transcription while de-repressing hut translation via the CbrAB-CrcYZ-Crc/Hfq regulatory cascade. Together, our data reveal that the local transcription factor HutC plays a crucial role in governing NtrBC to maintain carbon/nitrogen homeostasis through the complex interactions between two TCSs (NtrBC and CbrAB) at the hut promoter.
双组分系统 (TCS) 的自动激活可以提高对信号的敏感性,但固有地导致响应延迟。在这里,我们描述了一种独特的负反馈机制,使全局 NtrB/NtrC 调节剂能够在 Pseudomonas fluorescens 中组氨酸利用 (hut) 的过程中快速响应氮饥饿。NtrBC 直接激活 hut 基因的转录,但过表达会产生过量的铵,导致 NtrBC 失活。为了防止这种情况发生,组氨酸响应的抑制剂 HutC 微调了 ntrBC 的自动激活:HutC 和 NtrC 结合到 ntrBC 启动子上的相同操作子位点。这个新发现的低亲和力结合位点与 HutC 识别用于 hut 操纵子底物特异性诱导的共有序列几乎没有序列相似性。遗传和转录组分析的组合表明,当组氨酸在高浓度下波动时,ΔhutC 背景下的 ntrBC 和 hut 启动子活性都不能稳定维持。此外,全局碳调节剂 CbrA/CbrB 通过 CbrAB-CrcYZ-Crc/Hfq 调控级联直接激活 hut 转录,同时通过解除 hut 翻译的抑制来解除抑制。总之,我们的数据表明,局部转录因子 HutC 通过在 hut 启动子上两个 TCS(NtrBC 和 CbrAB)之间的复杂相互作用,在调节 NtrBC 以维持碳/氮平衡方面发挥着关键作用。