首页> 美国卫生研究院文献>Infection and Immunity >Degradation of gonococcal peptidoglycan by granule extract from human neutrophils: demonstration of N-acetylglucosaminidase activity that utilizes peptidoglycan substrates.
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Degradation of gonococcal peptidoglycan by granule extract from human neutrophils: demonstration of N-acetylglucosaminidase activity that utilizes peptidoglycan substrates.

机译:人类嗜中性粒细胞颗粒提取物对淋球菌肽聚糖的降解:利用肽聚糖底物的N-乙酰氨基葡糖苷酶活性的证明。

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摘要

The degradation of purified Neisseria gonorrhoeae peptidoglycan (PG) by granule extract derived from normal human polymorphonuclear leukocytes was examined. Hen egg lysozyme-resistant, extensively O-acetylated [3H]PG (O-PG) from strain FA19 and lysozyme-sensitive, non-O-acetylated [14C]PG (non-O-PG) from strain RD5 (each containing label in both glucosamine and muramic acid) were mixed and incubated with granule extract at pHs 4.5, 5.5, and 6.5. The rate of degradation of O-PG was uniformly slower than that of non-O-PG in the same tube, but ultimately, even the O-PG was rendered completely soluble. Molecular-sieve high-performance liquid chromatography revealed that both PGs were degraded by granule extract at the pH values tested to disaccharide peptide monomers and peptide-cross-linked oligomers, reflecting the action of human lysozyme. Of particular interest was the appearance of a peak containing free N-acetylglucosamine which was quite prominent in reaction mixtures at pH 4.5, less prominent at pH 5.5, and not detectable at pH 6.5. Free N-acetylglucosamine was not released from control PG samples at any pH in the absence of granule extract. Treatment of purified gonococcal PG monomers with granule extract at pH 4.5 yielded exclusively free N-acetylglucosamine and muramyl peptides with no N-acetylglucosamine. These data suggest that granule extract contains a previously undescribed pH-dependent N-acetylglucosaminidase with specificity for PG as well as an N-acetylmuramidase activity that degrades O-PG less efficiently than it does non-O-PG.
机译:检查了来自正常人多形核白细胞的颗粒提取物对纯化的淋病奈瑟氏球菌肽聚糖(PG)的降解。耐鸡蛋的耐溶菌酶的,来自FA19菌株的广泛O-乙酰化的[3H] PG(O-PG)和来自RD5菌株的对溶菌酶敏感的,非O-乙酰化的[14C] PG(非O-PG)(每个都包含标记)将葡糖胺和葡糖胺酸中的二甲基氨基甲酸酯混合)并与颗粒提取物在pH 4.5、5.5和6.5下孵育。在同一试管中,O-PG的降解速率始终比非O-PG的降解速率慢,但最终,甚至O-PG也变得完全可溶。分子筛高效液相色谱显示,在测试的pH值下,两种PGs均被颗粒提取物降解为二糖肽单体和肽交联的低聚物,反映了人类溶菌酶的作用。特别令人感兴趣的是出现了含有游离N-乙酰氨基葡糖的峰,该峰在pH 4.5的反应混合物中非常突出,在pH 5.5时不太突出,在pH 6.5时无法检测到。在不存在颗粒提取物的情况下,在任何pH下均未从对照PG样品中释放出游离N-乙酰氨基葡萄糖。用pH 4.5的颗粒提取物处理纯化的淋球菌PG单体,仅产生游离的N-乙酰氨基葡糖和不带有N-乙酰氨基葡糖的嘧啶肽。这些数据表明颗粒提取物包含先前未描述的对PG具有​​特异性的pH依赖性N-乙酰氨基葡糖苷酶以及N-乙酰村酰胺酶活性,该活性比非O-PG降解效率低。

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