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首页> 外文期刊>Infection and immunity >Surface characteristics of Pseudomonas aeruginosa grown in a chamber implant model in mice and rats.
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Surface characteristics of Pseudomonas aeruginosa grown in a chamber implant model in mice and rats.

机译:在小鼠和大鼠的腔室植入模型中生长的铜绿假单胞菌的表面特征。

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摘要

Pseudomonas aeruginosa PAO1 was grown in vivo in chambers implanted into the peritoneums of mice and rats. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis of extracts of bacterial cells taken from the chambers and washed to remove loosely bound host proteins revealed the presence of the major outer membrane proteins D2, E, F, G, and H2. Western immunoblotting with specific antisera confirmed the presence of porin protein F and lipoprotein H2. However, there was no apparent induction of the phosphate starvation-inducible porin P or the divalent cation starvation-inducible protein H1. Small amounts of proteins with molecular weights similar to those of the iron-regulated outer membrane proteins were found in cells grown in vivo; however, their presence could not be confirmed immunologically. The presence of pili and flagella on the cells grown in vivo was demonstrated by electron microscopy and Western immunoblotting. A consistent alteration in the lipopolysaccharide banding pattern was observed after growth in vivo. Compared with cells of strain PAO1 grown in vitro, cells grown in vivo appeared to lack a series of high-molecular-weight O-antigen-containing lipopolysaccharide bands and gained a new series of lower-molecular-weight lipopolysaccharide bands. This alteration in the lipopolysaccharide after growth in vivo did not affect the O-antigen serotype or the resistance of the bacteria to serum.
机译:铜绿假单胞菌PAO1在植入小鼠和大鼠腹膜的小室中体内生长。从腔室取出细菌细胞提取物的十二烷基硫酸钠-聚丙烯酰胺钠凝胶电泳,并洗涤以除去松散结合的宿主蛋白,这表明存在主要的外膜蛋白D2,E,F,G和H2。用特异性抗血清进行Western免疫印迹证实了孔蛋白F和脂蛋白H2的存在。然而,没有明显的诱导磷酸饥饿诱导的孔蛋白P或二价阳离子饥饿诱导的蛋白H1的诱导。在体内生长的细胞中发现了一些分子量与铁调节的外膜蛋白相似的分子量的蛋白。然而,不能通过免疫学证实它们的存在。通过电子显微镜和Western免疫印迹证实了在体内生长的细胞上菌毛和鞭毛的存在。在体内生长后,观察到脂多糖带模式的一致变化。与体外生长的PAO1菌株的细胞相比,体内生长的细胞似乎缺少一系列高分子量的含O-抗原的脂多糖带,并获得了一系列新的较低分子量的脂多糖带。体内生长后脂多糖的这种变化不影响O-抗原血清型或细菌对血清的抗性。

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