首页> 外文期刊>Infection and immunity >Gonococci with mutations to low-level penicillin resistance exhibit increased sensitivity to the oxygen-independent bactericidal activity of human polymorphonuclear leukocyte granule extracts.
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Gonococci with mutations to low-level penicillin resistance exhibit increased sensitivity to the oxygen-independent bactericidal activity of human polymorphonuclear leukocyte granule extracts.

机译:具有低水平青霉素抗性突变的淋球菌对人多形核白细胞颗粒提取物的非氧依赖性杀菌活性表现出更高的敏感性。

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Gonococci which cause disseminated gonococcal infection are nearly always highly penicillin sensitive, in contrast to many isolates causing uncomplicated gonorrhea. We questioned whether any of the known chromosomal mutations to low-level penicillin resistance might adversely affect virulence. The penA2 locus is known to result in low-level resistance to penicillins, whereas mtr-2 results in nonspecific resistance to a variety of antimicrobial agents. We found that the penA2 and mtr-2 mutations each markedly increased sensitivity of strain FA19 to oxygen-independent killing by human polymorphonuclear leukocyte mixed or isolated azurophilic granule extracts. The penA2 and mtr-2 mutations had no effect on sensitivity to serum antibody and complement. Isogenic opaque or transparent variants of several strains of Neisseria gonorrhoeae were equally resistant to human polymorphonuclear leukocyte mixed granule extract bactericidal systems. There were also no differences in susceptibility of piliated type 1 and nonpiliated type 4 variants to human polymorphonuclear leukocyte mixed granule extracts. Since the penA2 and mtr-2 loci are known to increase the degree of cross-linking of cell wall peptidoglycan, the structure of peptidoglycan apparently affects sensitivity to killing by one or more polymorphonuclear leukocyte azurophilic granule extract bactericidal systems. These observations might explain why gonococci with mutations similar to penA2 and mtr-2 are almost never isolated from patients with disseminated gonococcal infection.
机译:与引起单纯性淋病的许多分离株相反,引起弥漫性淋球菌感染的淋球菌几乎总是对青霉素高度敏感。我们质疑对低水平青霉素耐药性的任何已知染色体突变是否会对毒力产生不利影响。已知penA2基因座对青霉素的耐药性较低,而mtr-2基因对多种抗菌剂的非特异性耐药性。我们发现,penA2和mtr-2突变均显着提高了菌株FA19对人多形核白细胞混合或分离的嗜酸性颗粒提取物对氧依赖性杀伤的敏感性。 penA2和mtr-2突变对血清抗体和补体的敏感性没有影响。淋病奈瑟氏菌的几个菌株的同基因不透明或透明变体同样对人多形核白细胞混合颗粒提取物杀菌系统具有抗性。纤毛1型和非纤毛4型变体对人多形核白细胞混合颗粒提取物的敏感性也没有差异。由于已知penA2和mtr-2基因座会增加细胞壁肽聚糖的交联程度,因此肽聚糖的结构显然会影响一种或多种多形核白细胞嗜酸性颗粒提取物杀菌系统对杀伤的敏感性。这些观察结果可以解释为什么几乎从未从具有传播性淋球菌感染的患者中分离出具有类似于penA2和mtr-2突变的淋球菌。

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