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Additive Attenuation of Virulence ofStreptococcus pneumoniae by Mutation of the Genes Encoding Pneumolysin and Other Putative Pneumococcal Virulence Proteins

机译:通过编码肺炎球菌溶血素和其他推定的肺炎球菌毒力蛋白基因的突变,对肺炎链球菌的毒力进行加和衰减。

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Although the polysaccharide capsule of Streptococcus pneumoniae has been recognized as a sine qua non of virulence, much recent attention has focused on the role of pneumococcal proteins in pathogenesis, particularly in view of their potential as vaccine antigens. The individual contributions of pneumolysin (Ply), the major neuraminidase (NanA), autolysin (LytA), hyaluronidase (Hyl), pneumococcal surface protein A (PspA), and choline-binding protein A (CbpA) have been examined by specifically mutagenizing the respective genes in the pneumococcal chromosome and comparing the impact on virulence in a mouse intraperitoneal challenge model. Mutagenesis of either the ply, lytA, or pspA gene in S. pneumoniae D39 significantly reduced virulence, relative to that of the wild-type strain, indicating that the respective gene products contribute to pathogenesis. On the other hand, mutations in nanA, hyl, or cbpA had no significant impact. The virulence of D39 derivatives carrying aply deletion mutation as well as an insertion-duplication mutation in one of the other genes was also examined. Mutagenesis of either nanA or lytA did not result in an additional attenuation of virulence in the ply deletion background. However, significant additive attenuation in virulence was observed for the strains with ply-hyl,ply-pspA, and ply-cbpA double mutations.
机译:尽管肺炎链球菌的多糖荚膜已被公认为是毒力的必要条件,但近来人们的注意力主要集中在肺炎球菌蛋白在发病机理中的作用,特别是考虑到其作为疫苗抗原的潜力。通过特异性诱变检查了肺炎球菌溶血素(Ply),主要神经氨酸酶(NanA),自溶素(LytA),透明质酸酶(Hyl),肺炎球菌表面蛋白A(PspA)和胆碱结合蛋白A(CbpA)的个体贡献肺炎球菌染色体中的各个基因,并比较小鼠腹膜内攻击模型对毒力的影响。相对于野生型毒株,肺炎链球菌D39中ply,lytA或pspA基因的诱变显着降低了毒力,表明相应的基因产物有助于发病。另一方面,nanA,hyl或cbpA中的突变没有明显影响。还检查了在其他基因之一中带有aply缺失突变以及插入重复复制突变的D39衍生物的毒力。 nanA或lytA的诱变不会导致层删除背景中毒力的进一步减弱。然而,观察到具有ply-hyl,ply-pspA和ply-cbpA双重突变的菌株在毒力上的显着加性衰减。

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