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Salmonella enterotoxin (Stn) regulates membrane composition and integrity

机译:沙门氏菌肠毒素(Stn)调节膜成分和完整性

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The mechanism of action of Salmonella enterotoxin (Stn) as a virulence factor in disease is controversial. Studies of Stn have indicated both positive and negative effects on Salmonella virulence. In this study, we attempted to evaluate Stn function and its effects on Salmonella virulence. To investigate Stn function, we first performed in vitro and in vivo analysis using mammalian cells and a murine ileal loop model. In these systems, we did not observe differences in virulence phenotypes between wild-type Salmonella and an stn gene-deleted mutant. We next characterized the phenotypes and molecular properties of the mutant strain under various in vitro conditions. The proteomic profiles of the total cell membrane protein fraction differed between wild type and mutant in that there was an absence of a protein in the mutant strain, which was identified as OmpA. By far-western blotting, OmpA was found to interact directly with Stn. To verify this result, the morphology of Salmonella was examined by transmission electron microscopy, with OmpA localization being analyzed by immunogold labeling. Compared with wild-type Salmonella , the mutant strain had a different pole structure and a thin periplasmic space; OmpA was not seen in the mutant. These results indicate that Stn, via regulation of OmpA membrane localization, functions in the maintenance of membrane composition and integrity.
机译:沙门氏菌肠毒素(Stn)作为疾病中的一种致病因子的作用机制是有争议的。对Stn的研究表明,沙门氏菌毒力既有正面影响,也有负面影响。在这项研究中,我们试图评估Stn功能及其对沙门氏菌毒力的影响。为了研究Stn功能,我们首先使用哺乳动物细胞和鼠回肠loop模型进行了体外和体内分析。在这些系统中,我们没有观察到野生型沙门氏菌和缺失stn基因的突变体之间毒力表型的差异。接下来,我们在各种体外条件下表征了突变菌株的表型和分子特性。在野生型和突变型之间,总细胞膜蛋白级分的蛋白质组学特征有所不同,因为突变型菌株中没有蛋白质,被鉴定为OmpA。通过远古印迹,发现OmpA与Stn直接相互作用。为了验证该结果,通过透射电子显微镜检查了沙门氏菌的形态,并通过免疫金标记分析了OmpA的定位。与野生型沙门氏菌相比,该突变株具有不同的极结构和较薄的周质空间。在突变体中未发现OmpA。这些结果表明,Stn通过调节OmpA膜的定位,在维持膜组成和完整性中起作用。

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