Max Planck Institute for Terrestrial Microbiology, 35043 Marburg, Germany;
LOEWE Center for Synthetic Microbiology (SYNMIKRO), 35043 Marburg, Germany.
Proc Natl Acad Sci U S A. 2017 Dec 12;114(50):E10792-E10798. doi: 10.1073/pnas.1717272114. Epub 2017 Nov 28.
The PhoQ/PhoP two-component system plays an essential role in the response of enterobacteria to the environment of their mammalian hosts. It is known to sense several stimuli that are potentially associated with the host, including extracellular magnesium limitation, low pH, and the presence of cationic antimicrobial peptides. Here, we show that the PhoQ/PhoP two-component systems of and can also perceive an osmotic upshift, another key stimulus to which bacteria become exposed within the host. In contrast to most previously established stimuli of PhoQ, the detection of osmotic upshift does not require its periplasmic sensor domain. Instead, we show that the activity of PhoQ is affected by the length of the transmembrane (TM) helix as well as by membrane lateral pressure. We therefore propose that osmosensing relies on a conformational change within the TM domain of PhoQ induced by a perturbation in cell membrane thickness and lateral pressure under hyperosmotic conditions. Furthermore, the response mediated by the PhoQ/PhoP two-component system was found to improve bacterial growth recovery under hyperosmotic stress, partly through stabilization of the sigma factor RpoS. Our findings directly link the PhoQ/PhoP two-component system to bacterial osmosensing, suggesting that this system can mediate a concerted response to most of the established host-related cues.
PhoQ/PhoP 双组分系统在肠杆菌对其哺乳动物宿主环境的反应中起着至关重要的作用。已知它可以感知几种与宿主相关的潜在刺激,包括细胞外镁限制、低 pH 值和阳离子抗菌肽的存在。在这里,我们表明 和 的 PhoQ/PhoP 双组分系统也可以感知渗透压上升,这是细菌在宿主内暴露的另一个关键刺激。与大多数先前建立的 PhoQ 刺激物不同,渗透压上升的检测不需要其周质感应域。相反,我们表明 PhoQ 的活性受跨膜 (TM) 螺旋的长度以及膜横向压力的影响。因此,我们提出渗透压感应依赖于 PhoQ 的 TM 结构域内的构象变化,这种构象变化是由细胞膜厚度和横向压力在高渗条件下的扰动引起的。此外,发现由 PhoQ/PhoP 双组分系统介导的反应可以改善细菌在高渗应激下的生长恢复,部分原因是稳定了 sigma 因子 RpoS。我们的发现直接将 PhoQ/PhoP 双组分系统与细菌渗透压感应联系起来,表明该系统可以介导对大多数已建立的宿主相关线索的协调反应。