Plano G V, Straley S C
Department of Microbiology and Immunology, Chandler Medical Center, University of Kentucky, Lexington 40536, USA.
J Bacteriol. 1995 Jul;177(13):3843-54. doi: 10.1128/jb.177.13.3843-3854.1995.
The Yersinia pestis low-Ca2+ response stimulon is responsible for the temperature- and Ca(2+)-regulated expression and secretion of plasmid pCD1-encoded antihost proteins (V antigen and Yops). We have previously shown that lcrD and yscR encode proteins that are essential for high-level expression and secretion of V antigen and Yops at 37 degrees C in the absence of Ca2+. In this study, we constructed and characterized mutants with in-frame deletions in yscC, yscD, and yscG of the ysc operon that contains yscA through yscM. All three mutants lost the Ca2+ requirement for growth at 37 degrees c, expressed only basal levels of V antigen and YopM in the presence or absence of Ca2+, and failed to secrete these proteins to the culture supernatant. Overproduction of YopM in these mutants failed to restore YopM export, showing that the mutations had a direct effect on secretion. The protein products of yscC, yscD, and yscG were identified and localized by immunoblot analysis. YscC was localized to the outer membrane of Y. pestis, while YscD was found in the inner membrane. YscG was distributed equally between the soluble and total membrane fractions. Double mutants were characterized to assess where YscC and YscD act in low-Ca2+ response (LCR) regulation. lcrH::cat-yscC and lcrH::cat-yscD double mutants were constitutively induced for expression of V antigen and YopM; however, these proteins were not exported. This finding showed that the ysc mutations did not directly decrease induction of LCR stimulon genes. In contrast, lcrE-yscC, lcrG-yscC, lcrE-yscD, and lcrG-yscD double mutants as well as an lcrE-lcrD double mutant expressed only basal levels of V antigen and YopM and also failed to secrete these proteins to the culture supernatant. These results indicated that a functional LCR secretion system was necessary for high-level expression of LCR stimulon proteins in the lcrE and lcrG mutants but not in an lcrH::cat mutant. Possible models of regulation which incorporate these results are discussed.
鼠疫耶尔森菌低钙应答刺激子负责质粒pCD1编码的抗宿主蛋白(V抗原和Yops)的温度和钙离子调节的表达与分泌。我们之前已经表明,lcrD和yscR编码的蛋白对于在37℃无钙离子条件下V抗原和Yops的高水平表达与分泌至关重要。在本研究中,我们构建并鉴定了ysc操纵子中yscC、yscD和yscG发生框内缺失的突变体,该操纵子包含从yscA到yscM的基因。所有这三个突变体在37℃生长时都失去了对钙离子的需求,在有无钙离子的情况下都仅表达基础水平的V抗原和YopM,并且无法将这些蛋白分泌到培养上清中。在这些突变体中过量表达YopM未能恢复YopM的输出,表明这些突变对分泌有直接影响。通过免疫印迹分析鉴定并定位了yscC、yscD和yscG的蛋白产物。YscC定位于鼠疫耶尔森菌的外膜,而YscD在内膜中被发现。YscG在可溶性组分和总膜组分中分布均匀。构建双突变体以评估YscC和YscD在低钙应答(LCR)调节中发挥作用的位置。lcrH::cat - yscC和lcrH::cat - yscD双突变体中V抗原和YopM的表达被组成型诱导;然而,这些蛋白并未输出。这一发现表明ysc突变并未直接降低LCR刺激子基因的诱导。相反,lcrE - yscC、lcrG - yscC、lcrE - yscD和lcrG - yscD双突变体以及lcrE - lcrD双突变体仅表达基础水平的V抗原和YopM,并且也无法将这些蛋白分泌到培养上清中。这些结果表明,功能性的LCR分泌系统对于lcrE和lcrG突变体中LCR刺激子蛋白的高水平表达是必需的,但对于lcrH::cat突变体则不是。文中讨论了纳入这些结果的可能调节模型。