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革兰氏阴性菌对纯化杀菌白细胞蛋白的抗性:与结合及细菌脂多糖结构的关系。

Resistance of gram-negative bacteria to purified bactericidal leukocyte proteins: relation to binding and bacterial lipopolysaccharide structure.

作者信息

Weiss J, Beckerdite-Quagliata S, Elsbach P

出版信息

J Clin Invest. 1980 Mar;65(3):619-28. doi: 10.1172/JCI109707.

Abstract

The sensitivity or resistance of gram-negative bacteria to antibacterial systems appears to be related to the length of the saccharide chain of the bacterial envelope lipopolysaccharides (LPS). To explore this relationship further, we made use of two bactericidal, membrane-active cationic proteins, recently purified to near homogeneity, one from human and one from rabbit polymorphonuclear leukocytes (PMN). We have studied the effects of these two closely similar proteins on strains of Salmonella typhimurium and Escherichia coli, each separate strain differing in the saccharide chain length of its outer membrane LPS. Binding of these proteins to the bacterial outer membrane is required for killing, and is accompanied by an almost immediate increase in outer membrane permeability to normally impermeant actinomycin D. Sensitivity to the bactericidal and permeability-increasing activities of the human and rabbit proteins increases with decreasing LPS-saccharide chain length (chemotype: [S < Ra < Rb(3) < Rc < Rd(1)]). S. typhimurium G-30 and E. coli J5, mutant strains lacking UDP-galactose-4-epimerase, synthesize incomplete LPS (chemotype Rc) when grown without galactose, and are then as sensitive to both PMN proteins as the S. typhimurium strains 395 R10 (Rd(1)) and R5 (Rb(3)). However, when these mutants are grown with galactose, they synthesize complete LPS (chemotype S) and exhibit nearly the same relative insensitivity as the smooth strains S. typhimurium 395 MS and E. coli 0111:B4. The differences among strains in sensitivity to the effects of the proteins on bacterial viability and permeability correspond to differences in bacterial binding of these PMN proteins. Thus, at protein concentrations that produce maximal antibacterial activity toward the rough bacteria, but little or no activity toward the smooth strains, rough bacteria bind from 3- to 10-fold more protein (S. typhimurium 395 R10; S. typhimurium G-30, and E. coli J5 [grown without galactose]) than do the smooth bacteria (S. typhimurium 395 MS; E. coli 0111:B4; S. typhimurium G-30 and E. coli J5 [grown with galactose]). These findings suggest that bacterial sensitivity or resistance to these purified bactericidal PMN proteins is determined by the binding properties of the outer membrane, which in turn depends upon the LPS-saccharide chain length.

摘要

革兰氏阴性菌对抗菌系统的敏感性或抗性似乎与细菌包膜脂多糖(LPS)的糖链长度有关。为了进一步探究这种关系,我们利用了两种杀菌性、膜活性阳离子蛋白,它们最近已纯化至近乎同质,一种来自人,另一种来自兔多形核白细胞(PMN)。我们研究了这两种极为相似的蛋白对鼠伤寒沙门氏菌和大肠杆菌菌株的影响,每个单独的菌株其外膜LPS的糖链长度各不相同。这些蛋白与细菌外膜的结合是杀菌所必需的,并且伴随着外膜对通常不能透过的放线菌素D的通透性几乎立即增加。对人和兔蛋白的杀菌及增加通透性活性的敏感性随着LPS - 糖链长度的缩短而增加(化学型:[S < Ra < Rb(3) < Rc < Rd(1)])。鼠伤寒沙门氏菌G - 30和大肠杆菌J5是缺乏UDP - 半乳糖 - 4 - 表异构酶的突变菌株,在无半乳糖生长时合成不完全LPS(化学型Rc),此时它们对两种PMN蛋白的敏感性与鼠伤寒沙门氏菌菌株395 R10(Rd(1))和R5(Rb(3))相同。然而,当这些突变体在有半乳糖的情况下生长时,它们合成完整LPS(化学型S),并表现出与光滑菌株鼠伤寒沙门氏菌395 MS和大肠杆菌0111:B4几乎相同的相对不敏感性。菌株对蛋白对细菌活力和通透性影响的敏感性差异与这些PMN蛋白在细菌上的结合差异相对应。因此,在产生对粗糙菌最大抗菌活性但对光滑菌株几乎没有活性的蛋白浓度下,粗糙菌(鼠伤寒沙门氏菌395 R10;鼠伤寒沙门氏菌G - 30和大肠杆菌J5 [无半乳糖生长])比光滑菌(鼠伤寒沙门氏菌395 MS;大肠杆菌0111:B4;鼠伤寒沙门氏菌G - 30和大肠杆菌J5 [有半乳糖生长])多结合3至10倍的蛋白。这些发现表明,细菌对这些纯化的杀菌PMN蛋白的敏感性或抗性是由外膜的结合特性决定的,而外膜的结合特性又取决于LPS - 糖链长度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ded/371403/eaaf93f6ca14/jcinvest00687-0055-a.jpg

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