Comolli J C, Waite L L, Mostov K E, Engel J N
Departments of Medicine, University of California, San Francisco, San Francisco, California 94143, USA.
Infect Immun. 1999 Jul;67(7):3207-14. doi: 10.1128/IAI.67.7.3207-3214.1999.
The interaction of Pseudomonas aeruginosa type IV pili and the glycosphingolipid asialo-GM1 (aGM1) can mediate bacterial adherence to epithelial cells, but the steps subsequent to this adherence have not been elucidated. To investigate the result of the interaction of pili and aGM1, we used polarized epithelial monolayers of Madin-Darby canine kidney (MDCK) cells in culture, which contained little detectable aGM1 on their apical surface but were able to incorporate exogenous aGM1. Compared to an untreated monolayer, P. aeruginosa PA103 displayed an eightfold increase in association with and fivefold more cytotoxicity toward MDCK cells pretreated with aGM1. Cytotoxicity of either carrier-treated or aGM1-treated monolayers required the type III secreted protein ExoU. Asialo-GM1 pretreatment of MDCK monolayers likewise augmented bacterial internalization of an isogenic invasive strain approximately fourfold. These increases were not seen in monolayers treated with GM1, the sialyated form of the glycolipid, and were inhibited by treatment with an antibody to aGM1. Also, the aGM1-mediated adhesion, cytotoxicity, and internalization required intact type IV pili since nonpiliated PA103 mutants were unaffected by aGM1 pretreatment of MDCK cells. These results demonstrate that epithelial cell injury and bacterial internalization can proceed from the same adhesin-receptor interaction, and they indicate that P. aeruginosa exoproducts solely determine the steps subsequent to adhesion.
铜绿假单胞菌IV型菌毛与神经节苷脂脱唾液酸GM1(aGM1)的相互作用可介导细菌黏附于上皮细胞,但这种黏附之后的步骤尚未阐明。为了研究菌毛与aGM1相互作用的结果,我们使用了培养的Madin-Darby犬肾(MDCK)细胞的极化上皮单层,其顶端表面几乎检测不到aGM1,但能够摄取外源性aGM1。与未处理的单层相比,铜绿假单胞菌PA103与用aGM1预处理的MDCK细胞的结合增加了八倍,细胞毒性增加了五倍。载体处理或aGM1处理的单层的细胞毒性都需要III型分泌蛋白ExoU。MDCK单层的脱唾液酸GM1预处理同样使同基因侵袭菌株的细菌内化增加了约四倍。在用神经节苷脂GM1(糖脂的唾液酸化形式)处理的单层中未观察到这些增加,并且用抗aGM1抗体处理可抑制这些增加。此外,aGM1介导的黏附、细胞毒性和内化需要完整的IV型菌毛,因为无菌毛的PA103突变体不受MDCK细胞aGM1预处理的影响。这些结果表明,上皮细胞损伤和细菌内化可源自相同的黏附素-受体相互作用,并且表明铜绿假单胞菌的胞外产物单独决定黏附后的步骤。