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Bactericidal Activity of Specific and Azurophil Granules from Human Neutrophils: Studies with Outer-Membrane Mutants of Salmonella typhimurium LT-2

机译:人类嗜中性粒细胞的特异和Azurophil颗粒的杀菌活性:鼠伤寒沙门氏菌LT-2的外膜突变体的研究

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摘要

Extracts of specific granules and azurophil granules from human neutrophils were tested for their bactericidal activity against various lipopolysaccharide mutants of Salmonella typhimurium LT-2. Three purified granule populations, one specific and two azurophil, were obtained by isopycnic centrifugation of homogenized neutrophils. Each was extracted with 0.2 M acetate buffer (pH 4), and the extracts were dialyzed against phosphate-buffered saline (pH 7) to remove acetate. These extracts contained ≥84% of the lysozyme, lactoferrin, or myeloperoxidase initially present in the whole granules. The S. typhimurium mutants possessed Ra, Rc, Rd1, Rd2, or Re lipopolysaccharide. As the carbohydrate content of the lipopolysaccharide decreased, the bacteria became increasingly more susceptible to the bactericidal activity of all granule extracts. Bactericidal activity of the extracts was in the order: mixed (azurophil + specific) ≥ azurophil » specific. Specific granules were bacteriostatic for S through Rd2 bacteria. They were bactericidal only for the Re mutant. Both azurophil granule populations were equally bactericidal. Extracts boiled for 30 min retained none of their bactericidal activity for any of the bacteria; however, they remained bacteriostatic for the deep rough (Rd2, Re) mutants. Bactericidal activity was dependent upon pH, in that mixed and azurophil granule contents killed the smooth parent and Ra mutant best at pH 5, the Rc and Rd1 mutants to the same degree at pH 5 to 8, and the deep rough mutants (Rd2 and Re) best at pH 8. Specific granule contents were most bacteriostatic for S through Rd2 bacteria at pH 5 and killed the Re mutant only at pH 8. Thus, as the S. typhimurium lipopolysaccharide content decreased, the bactericidal pH optimum increased. Killing by all extracts was dependent upon incubation temperature, with almost no bactericidal or bacteriostatic activity observed when bacteria and granule fractions were incubated on ice (2°C) and plated immediately. Intermediate killing was observed at 22°C. If bacteria were incubated with granule extracts at 2°C, washed free of extract, suspended in medium without extract, and reincubated at 37°C, killing was observed. This suggested that a component(s) of the extracts was sticking to the bacteria at 2°C but killing only at 37°C.
机译:测试了来自人嗜中性粒细胞的特定颗粒和嗜蓝颗粒的提取物对鼠伤寒沙门氏菌LT-2的各种脂多糖突变体的杀菌活性。通过匀浆离心均质化的中性粒细胞,获得了三个纯化的颗粒群,一个是特异性的,两个是嗜酸性的。每种用0.2M乙酸盐缓冲液(pH 4)萃取,并将萃取物用磷酸盐缓冲盐水(pH 7)透析以除去乙酸盐。这些提取物含有≥84%最初存在于整个颗粒中的溶菌酶,乳铁蛋白或髓过氧化物酶。鼠伤寒沙门氏菌突变体具有Ra,Rc,Rd1,Rd2或Re脂多糖。随着脂多糖中碳水化合物含量的减少,细菌对所有颗粒提取物的杀菌活性变得越来越敏感。提取物的杀菌活性按以下顺序排列:混合(全天蓝色+专一)≥全天蓝色»专一。特定的颗粒通过Rd2细菌对S具有抑菌作用。它们仅对Re突变体具有杀菌作用。两种类固氮体均具有相同的杀菌作用。煮沸30分钟的提取物对任何细菌均无杀菌活性。但是,它们对于深的粗糙(Rd2,Re)突变体仍然具有抑菌作用。杀菌活性取决于pH值,因为混合的和天蓝色的颗粒含量在pH 5时能杀死平滑的亲本和Ra突变体,在pH 5到8时Rc和Rd1突变体的杀灭程度相同,而深粗糙的突变体(Rd2和Re最佳的pH值为8。特定的颗粒含量对S通过Rd2细菌在pH为5时具有最大的抑菌作用,并且仅在pH 8时才杀死Re突变体。因此,随着鼠伤寒沙门氏菌脂多糖含量的降低,最佳的pH值也增加了。所有提取物的杀灭取决于培养温度,当将细菌和颗粒级分在冰上(2°C)培养并立即铺板时,几乎没有杀菌或抑菌活性。在22℃下观察到中间杀伤。如果将细菌与颗粒提取物在2°C下温育,洗去无提取物,将其悬浮在不含提取物的培养基中,然后在37°C下重新温育,则观察到有杀伤力。这表明提取物的一种或多种成分在2°C时会粘附在细菌上,但仅在37°C时才被杀死。

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