首页> 外文期刊>Infection and immunity >Laboratory and Wild-Type Klebsiella pneumoniae Strains Carrying Mannose-Inhibitable Adhesins and Receptors for Coliphages T3 and T7 Are More Pathogenic for Mice Than Are Strains Without Such Receptors
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Laboratory and Wild-Type Klebsiella pneumoniae Strains Carrying Mannose-Inhibitable Adhesins and Receptors for Coliphages T3 and T7 Are More Pathogenic for Mice Than Are Strains Without Such Receptors

机译:实验室和野生型Klebsiella肺炎患者携带甘露糖可抑制的纸质和Coliphages T3和T7的受体对小鼠的致病性比没有这种受体的菌株更致病

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We have shown previously that Klebsiella pneumoniae receptors for coliphages T3 and T7 also mediate mannose-inhibitable adherence to human epithelial cells and protect bacteria from phagocytosis and intracellular killing by human polymorphonuclear cells. In this paper we analyze the possible role of such mannose-inhibitable adhesins and T3-T7 receptors (MIAT) in K. pneumoniae intraperitoneal pathogenicity for mice. We showed that intraperitoneal pathogenicity for mice of four different Klebsiella strains (one laboratory and three wild-type) that carry the MIAT was approximately 60-fold higher than that of four derivative strains that lost such receptors by spontaneous mutation. The MIAT could be repressed by Klebsiella phage AP3 lysogenic conversion. Two laboratory and two wild-type strains converted by phage AP3 were also approximately 60-fold less pathogenic for mice than parental strains and showed a pathogenicity level equal to that of the MIAT-negative mutants. Studies of protection in mice with anti-whole cell antisera showed that passive immunization against MIAT-positive cells was more protective than immunization against MIAT-negative cells. Studies of protection in mice by both active and passive immunization with lipopolysaccharide and purified outer membrane proteins have shown that the proteins are the most protective outer membrane components. Since it has been shown previously that the Klebsiella receptors for T3-T7 have a proteic component and that an outer membrane protein is missing in the strains resistant to T3-T7 (C. Pruzzo et al., in R. C. Berkely (ed.), Microbial Adhesion to Surfaces, 1980); the latter finding further supports the role of MIAT in the pathogenicity of Klebsiella for mice.
机译:我们以前表明,Coliphages T3和T7的 Klebsiella肺炎群Cnneumoniae 也介导人对人上皮细胞的甘露糖抑制,并保护细菌免受人多核细胞免受吞噬作用和细胞内杀伤的细菌。在本文中,我们分析了这种甘露糖抑制和T3-T7受体(MIAT)在 K中的可能作用。小鼠肺炎肺癌致病性。我们表明,四种不同 Klebsiella 菌株(一个实验室和三种野生型)的小鼠腹腔致病性大约比自发丢失这些受体的四种衍生菌株的60倍突变。可以通过 klebsiella 噬菌体AP3溶血性转化来抑制MIAT。由噬菌体AP3转化的两个实验室和两个野生型菌株比父母菌株的小鼠的致病性大约60倍,并且显示出致病性水平等于Miat阴性突变体的致病性水平。用抗全细胞抗血​​清的小鼠保护的研究表明,对模具阳性细胞的被动免疫比对抗水平阴性细胞的免疫更高。通过用脂多糖和纯化的外膜蛋白质的主动和被动免疫的小鼠保护研究表明,蛋白质是最具保护性外膜组分。由于先前已显示,T3-T7的 Klebsiella 受体具有典型的蛋白质部件,并且在抗T3-T7的菌株中缺少外膜蛋白(C.Pruzzo等,< EM>在 Rc Berkely(Ed.),微生物粘附到表面,1980);后一种发现进一步支持Miat在小鼠 Klebsiella 致病性中的作用。

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