Pezza Alejandro, Pontel Lucas B, López Carolina, Soncini Fernando C
Departamento de Microbiología, Facultad de Ciencias Bioquímicas y Farmacéuticas, Instituto de Biología Molecular y Celular de Rosario, Universidad Nacional de Rosario, Consejo Nacional de Investigaciones Científicas y Técnicas, 2000-Rosario, Argentina.
Departamento de Microbiología, Facultad de Ciencias Bioquímicas y Farmacéuticas, Instituto de Biología Molecular y Celular de Rosario, Universidad Nacional de Rosario, Consejo Nacional de Investigaciones Científicas y Técnicas, 2000-Rosario, Argentina
Proc Natl Acad Sci U S A. 2016 Oct 11;113(41):11573-11578. doi: 10.1073/pnas.1603192113. Epub 2016 Sep 27.
Copper homeostasis is essential for bacterial pathogen fitness and infection, and has been the focus of a number of recent studies. In Salmonella, envelope protection against copper overload and macrophage survival depends on CueP, a major copper-binding protein in the periplasm. This protein is also required to deliver the metal ion to the Cu/Zn superoxide dismutase SodCII. The Salmonella-specific CueP-coding gene was originally identified as part of the Cue regulon under the transcriptional control of the cytoplasmic copper sensor CueR, but its expression differs from the rest of CueR-regulated genes. Here we show that cueP expression is controlled by the concerted action of CueR, which detects the presence of copper in the cytoplasm, and by CpxR/CpxA, which monitors envelope stress. Copper-activated CueR is necessary for the appropriate spatial arrangement of the -10 and -35 elements of the cueP promoter, and CpxR is essential to recruit the RNA polymerase. The integration of two ancestral sensory systems-CueR, which provides signal specificity, and CpxR/CpxA, which detects stress in the bacterial envelope-restricts the expression of this periplasmic copper resistance protein solely to cells encountering surplus copper that disturbs envelope homeostasis, emulating the role of the CusR/CusS regulatory system present in other enteric bacteria.
铜稳态对于细菌病原体的适应性和感染至关重要,并且一直是近期多项研究的重点。在沙门氏菌中,抵御铜过载的包膜保护和巨噬细胞存活依赖于CueP,它是周质中的一种主要铜结合蛋白。该蛋白还需要将金属离子传递给铜锌超氧化物歧化酶SodCII。沙门氏菌特异性的CueP编码基因最初被鉴定为在细胞质铜传感器CueR转录控制下的Cue调节子的一部分,但其表达与其余受CueR调节的基因不同。在这里,我们表明cueP的表达受CueR(检测细胞质中铜的存在)和CpxR/CpxA(监测包膜应激)协同作用的控制。铜激活的CueR对于cueP启动子的-10和-35元件的适当空间排列是必需的,而CpxR对于募集RNA聚合酶至关重要。两个祖先感觉系统——提供信号特异性的CueR和检测细菌包膜应激的CpxR/CpxA——的整合,将这种周质铜抗性蛋白的表达仅限制在遇到扰乱包膜稳态的过量铜的细胞中,类似于其他肠道细菌中存在的CusR/CusS调节系统的作用。