Ward Christine K, Latimer Jo L, Nika Joseph, Vakevainen Merja, Mock Jason R, Deng Kaiping, Blick Robert J, Hansen Eric J
Department of Microbiology, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9048, USA.
Infect Immun. 2003 May;71(5):2478-86. doi: 10.1128/IAI.71.5.2478-2486.2003.
Haemophilus ducreyi 35000HP contains two genes, lspA1 and lspA2, whose predicted protein products have molecular weights of 456,000 and 543,000, respectively (C. K. Ward, S. R. Lumbley, J. L. Latimer, L. D. Cope, and E. J. Hansen, J. Bacteriol. 180:6013-6022, 1998). We have constructed three H. ducreyi 35000HP mutants containing antibiotic resistance cartridges in one or both of the lspA1 and lspA2 open reading frames. Western blot analysis using LspA1- and LspA2-specific monoclonal antibodies indicated that the wild-type parent strain 35000HP expressed LspA1 protein that was readily detectable in culture supernatant fluid together with a barely detectable amount of LspA2 protein. The lspA2 mutant 35000HP.2 expressed LspA1 protein that was detectable in culture supernatant fluid and no LspA2 protein. In contrast, the H. ducreyi lspA1 mutant 35000HP.1, which did not express the LspA1 protein, expressed a greater quantity of the LspA2 protein than did the wild-type parent strain. The lspA1 lspA2 double mutant 35000HP.12 expressed neither LspA1 nor LspA2. The three mutant strains adhered to human foreskin fibroblasts and to a human keratinocyte cell line in vitro at a level that was not significantly different from that of the wild-type strain 35000HP. Lack of expression of the LspA1 protein by both the lspA1 mutant and the lspA1 lspA2 double mutant was associated with an increased tendency to autoagglutinate. When evaluated in the temperature-dependent rabbit model for chancroid, the lspA1 lspA2 double mutant was substantially less virulent than the wild-type strain 35000HP. The results of these studies indicated that H. ducreyi requires both the LspA1 and LspA2 proteins to be fully virulent in this animal model for experimental chancroid.
杜克雷嗜血杆菌35000HP含有两个基因,lspA1和lspA2,其预测的蛋白质产物分子量分别为456,000和543,000(C.K.沃德、S.R.伦布利、J.L.拉蒂默、L.D.科普和E.J.汉森,《细菌学杂志》180:6013 - 6022,1998年)。我们构建了三个杜克雷嗜血杆菌35000HP突变体,在lspA1和lspA2开放阅读框中的一个或两个中含有抗生素抗性盒。使用LspA1和LspA2特异性单克隆抗体的蛋白质印迹分析表明,野生型亲本菌株35000HP表达的LspA1蛋白在培养上清液中易于检测到,同时还有少量几乎检测不到的LspA2蛋白。lspA2突变体35000HP.2表达在培养上清液中可检测到的LspA1蛋白,而不表达LspA2蛋白。相反,不表达LspA1蛋白的杜克雷嗜血杆菌lspA1突变体35000HP.1表达的LspA2蛋白量比野生型亲本菌株更多。lspA1 lspA2双突变体35000HP.12既不表达LspA1也不表达LspA2。这三个突变菌株在体外与人包皮成纤维细胞和人角质形成细胞系的黏附水平与野生型菌株35000HP没有显著差异。lspA1突变体和lspA1 lspA2双突变体均缺乏LspA1蛋白的表达,这与自凝倾向增加有关。在温度依赖性的软下疳兔模型中评估时,lspA1 lspA2双突变体的毒力比野生型菌株35000HP显著降低。这些研究结果表明,在这个实验性软下疳动物模型中,杜克雷嗜血杆菌需要LspA1和LspA2蛋白才能具有完全的毒力。