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首页> 外文期刊>Infection and immunity >Resistance of O-acetylated gonococcal peptidoglycan to human peptidoglycan-degrading enzymes.
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Resistance of O-acetylated gonococcal peptidoglycan to human peptidoglycan-degrading enzymes.

机译:O-乙酰化淋球菌肽肽对人肽聚糖降解酶的抗性。

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摘要

Two naturally occurring forms of gonococcal peptidoglycan (PG) were tested for their susceptibility to human PG hydrolases. Purified 3H-labeled PG substituted extensively with O-acetyl derivatives (O-PG; from Neisseria gonorrhoeae FA19) and 14C-labeled O-acetyl-deficient PG (non-O-PG; from N. gonorrhoeae RD5) were mixed together and treated with either normal human sera (NHS) or with lysozyme purified from human polymorphonuclear leukocytes (PMN-LZ). The initial rate of hydrolysis of O-PG by NHS or by PMN-LZ was two- to fourfold less than that of its non-O-PG counterpart in the same tube. When the reactions were allowed to go to completion. NHS solubilized both PGs completely, whereas PMN-LZ solubilized all of the non-O-PG and left ca. 60% of the O-PG insoluble. The PMN-LZ-soluble fraction of O-PG consisted largely of glycosidically linked fragments with molecular weights greater than ca. 10(4), whereas the corresponding non-O-PG was degraded to lower-molecular-weight fragments, exclusively. At completion, NHS hydrolyzed both PGs to fragments whose size was equal to or smaller than that of the free disaccharide unit of PG, suggesting that human sera contain a peptide-splitting (amidase) activity and a glycosidase activity, in addition to that of the well-known muramidase. NHS also promoted the release of high-molecular-weight PG fragments from intact gonococci. The persistence of human hydrolase-resistant PG in the form of soluble macromolecular fragments may potentiate the biological effects of gonococcal PG in vivo.
机译:测试了两种天然存在的淋病肽肽聚糖(PG)对人PG水解酶的敏感性。用O-乙酰基衍生物(O-PG;来自Neisseria淋病术危机Fa19)和14℃标记的O-乙酰基缺乏PG(非O-PG;从N.淋病淋病RD5)中纯化的3H标记的PG被混合并处理用正常的人血清(NHS)或用从人多核白细胞(PMN-LZ)纯化的溶菌酶。通过NHS或PMN-LZ的O-PG的初始水解率为2至FOFOL,而不是同一管中的非O-PG对应物的2。当允许反应完成时。 NHS完全溶解了两个PGS,而PMN-LZ溶解了所有非O-PG并留下了CA. 60%的O-PG不溶于溶解。 O-PG的PMN-LZ-SOLULB部分的O-PG级分在大于CA的分子量的糖苷连接的片段组成。如图10(4)所示,相应的非O-PG专门降低分子量碎片。在完成后,NHS将PGS水解成其尺寸等于或小于PG的自由二糖单元的片段,表明人血清含有肽分裂(酰基酶)活性和糖苷酶活性,除了众所周知的uramidase。 NHS还促进了来自完整的淋巴瘤的高分子量PG片段的释放。抗溶大分子片段形式的人水解酶抗性PG的持续存在可能使淋病菌PG的生物学作用提高。

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