Department of Microbiology and Immunology, McGill University, Montreal, Canada.
J Bacteriol. 2014 May;196(9):1641-50. doi: 10.1128/JB.01086-13. Epub 2014 Feb 7.
As a ubiquitous environmental organism and an important human pathogen, Pseudomonas aeruginosa readily adapts and responds to a wide range of conditions and habitats. The intricate regulatory networks that link quorum sensing and other global regulators allow P. aeruginosa to coordinate its gene expression and cell signaling in response to different growth conditions and stressors. Upon nutrient transitions and starvation, as well as other environmental stresses, the stringent response is activated, mediated by the signal (p)ppGpp. P. aeruginosa produces a family of molecules called HAQ (4-hydroxy-2-alkylquinolines), some of which exhibit antibacterial and quorum-sensing signaling functions and regulate virulence genes. In this study, we report that (p)ppGpp negatively regulates HAQ biosynthesis: in a (p)ppGpp-null (ΔSR) mutant, HHQ (4-hydroxyl-2-heptylquinoline) and PQS (3,4-dihydroxy-2-heptylquinoline) levels are increased due to upregulated pqsA and pqsR expression and reduced repression by the rhl system. We also found that (p)ppGpp is required for full expression of both rhl and las AHL (acyl-homoserine lactone) quorum-sensing systems, since the ΔSR mutant has reduced rhlI, rhlR, lasI, and lasR expression, butanoyl-homoserine lactone (C4-HSL) and 3-oxo-dodecanoyl-homoserine lactone (3-oxo-C12-HSL) levels, and rhamnolipid and elastase production. Furthermore, (p)ppGpp significantly modulates the AHL and PQS quorum-sensing hierarchy, as the las system no longer has a dominant effect on HAQ biosynthesis when the stringent response is inactivated.
作为一种普遍存在的环境生物和重要的人类病原体,铜绿假单胞菌能够轻松适应和响应广泛的条件和栖息地。连接群体感应和其他全局调节剂的复杂调节网络使铜绿假单胞菌能够协调其基因表达和细胞信号传递,以响应不同的生长条件和应激源。在营养物质转换和饥饿以及其他环境压力下,严格反应被激活,由信号(p)ppGpp 介导。铜绿假单胞菌产生了一系列称为 HAQ(4-羟基-2-烷基喹啉)的分子,其中一些具有抗菌和群体感应信号功能,并调节毒力基因。在本研究中,我们报告(p)ppGpp 负调控 HAQ 生物合成:在(p)ppGpp 缺失(ΔSR)突变体中,由于 pqsA 和 pqsR 表达上调以及 rhl 系统的抑制作用降低,HHQ(4-羟基-2-庚基喹啉)和 PQS(3,4-二羟基-2-庚基喹啉)水平增加。我们还发现(p)ppGpp 是充分表达 rhl 和 las AHL(酰基高丝氨酸内酯)群体感应系统所必需的,因为ΔSR 突变体的 rhlI、rhlR、lasI 和 lasR 表达减少,但酰基高丝氨酸内酯(C4-HSL)和 3-氧代-十二烷酰基高丝氨酸内酯(3-oxo-C12-HSL)水平以及鼠李糖脂和弹性蛋白酶产量降低。此外,(p)ppGpp 显著调节 AHL 和 PQS 群体感应层次结构,因为严格反应失活时,las 系统对 HAQ 生物合成不再具有主导作用。