Laskowski Michelle A, Osborn Ellice, Kazmierczak Barbara I
Program in Microbiology, Yale University School of Medicine, P O Box 208022, New Haven, CT 06520-8022, USA.
Mol Microbiol. 2004 Nov;54(4):1090-103. doi: 10.1111/j.1365-2958.2004.04331.x.
The type III secretion system (TTSS) of Pseudomonas aeruginosa is induced by contact with eukaryotic cells and by growth in low-calcium media. We have identified a protein, RtsM, that is necessary for expression of the TTSS genes in P. aeruginosa. RtsM possesses both histidine kinase and response regulator domains common to two-component signalling proteins, as well as a large predicted periplasmic domain and seven transmembrane domains. Deletion of rtsM resulted in a defect in production and secretion of the type III effectors. Northern blot analysis revealed that mRNAs encoding the effectors ExoT and ExoU are absent in the DeltartsM strain under TTSS-inducing conditions. Using transcriptional fusions, we demonstrated that RtsM is required for transcription of the operons encoding the TTSS effectors and apparatus in response to calcium limitation or to host cell contact. The operon encoding the TTSS regulator ExsA does not respond to calcium limitation, but the basal transcription rate of this operon was lower in deltartsM than in the wild-type parent, PA103. The defect in TTSS effector production and secretion of deltartsM could be complemented by overexpressing ExsA or Vfr, two transcriptional activators involved in TTSS regulation. DeltartsM was markedly less virulent than PA103 in a murine model of acute pneumonia, demonstrating that RtsM is required in vivo. We propose that RtsM is a sensor protein at the start of a signalling cascade that induces expression of the TTSS in response to environmental signals.
铜绿假单胞菌的III型分泌系统(TTSS)可由与真核细胞接触以及在低钙培养基中生长诱导产生。我们鉴定出一种蛋白RtsM,它是铜绿假单胞菌中TTSS基因表达所必需的。RtsM具有双组分信号蛋白共有的组氨酸激酶和反应调节结构域,以及一个预测的大的周质结构域和七个跨膜结构域。rtsM的缺失导致III型效应蛋白的产生和分泌出现缺陷。Northern印迹分析表明,在TTSS诱导条件下,缺失rtsM的菌株中编码效应蛋白ExoT和ExoU的mRNA缺失。利用转录融合技术,我们证明RtsM是编码TTSS效应蛋白和装置的操纵子在响应钙限制或宿主细胞接触时转录所必需的。编码TTSS调节因子ExsA的操纵子对钙限制无反应,但该操纵子在缺失rtsM的菌株中的基础转录率低于野生型亲本PA10菌株。缺失rtsM的菌株中TTSS效应蛋白产生和分泌的缺陷可通过过表达ExsA或Vfr(两种参与TTSS调节的转录激活因子)来弥补。在急性肺炎小鼠模型中,缺失rtsM的菌株的毒力明显低于PA103,这表明RtsM在体内是必需的。我们提出RtsM是信号级联反应起始处的一种传感蛋白,可响应环境信号诱导TTSS的表达。