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淋病奈瑟菌β-内酰胺敏感和耐药菌株的肽聚糖体外合成:β-内酰胺及其他抗生素的作用

In vitro synthesis of peptidoglycan by beta-lactam-sensitive and -resistant strains of Neisseria gonorrhoeae: effects of beta-lactam and other antibiotics.

作者信息

Brown C A, Perkins H R

出版信息

Antimicrob Agents Chemother. 1979 Jul;16(1):28-36. doi: 10.1128/AAC.16.1.28.

Abstract

The synthesis in vitro of peptidoglycan by Neisseria gonorrhoeae was studied in organisms made permeable to nucleotide precursors by treatment with ether. Optimum synthesis occurred at 30 degrees C in tris(hydroxymethyl)aminomethane-maleate buffer (0.05 M; pH 6) in the presence of 20 mM Mg(2+). The incorporation from uridine 5'-diphosphate-N-acetyl-[(14)C]glucosamine into peptidoglycan, measured after precipitation of the cells with trichloroacetic acid, was sensitive to the beta-lactam antibiotics, bacitracin, diumycin, and tunicamycin and relatively resistant to spectinomycin and tetracycline. Differences in sensitivity between preparations from a beta-lactamase producer and a laboratory segregant derived from it were not great. Synthesized peptidoglycan was also fractionated into sodium dodecyl sulfate-soluble and -insoluble portions. beta-Lactam antibiotics at concentrations equivalent to the minimal inhibitory concentrations for growth of the organisms did not inhibit peptidoglycan synthesis, but rather caused a small enhancement. At higher concentrations, above about 0.5 mug/ml, incorporation into sodium dodecyl sulfate-insoluble material was progressively inhibited, whereas the amount of sodium dodecyl sulfate-soluble product increased greatly, more than compensating for the loss of the precipitable fraction. Similar observations were made with three strains, and also with the beta-lactam clavulanic acid, normally considered as a beta-lactamase inhibitor rather than as itself an effective antibiotic.

摘要

通过用乙醚处理使淋病奈瑟菌对核苷酸前体具有通透性,以此研究该菌肽聚糖的体外合成。在三(羟甲基)氨基甲烷 - 马来酸缓冲液(0.05 M;pH 6)中,于20 mM Mg(2+)存在的条件下,30摄氏度时合成达到最佳状态。在用三氯乙酸沉淀细胞后测定的尿苷5'-二磷酸 - N - 乙酰 - [(14)C]葡糖胺掺入肽聚糖的情况,对β-内酰胺类抗生素、杆菌肽、迪尤霉素和衣霉素敏感,而对壮观霉素和四环素相对耐药。来自β-内酰胺酶产生菌及其衍生的实验室分离株的制剂在敏感性上差异不大。合成的肽聚糖也被分离成十二烷基硫酸钠可溶和不可溶部分。相当于该菌生长最低抑菌浓度的β-内酰胺类抗生素浓度并不抑制肽聚糖合成,反而会有小幅增强。在高于约0.5微克/毫升的较高浓度下,掺入十二烷基硫酸钠不溶性物质的过程逐渐受到抑制,而十二烷基硫酸钠可溶性产物的量大幅增加,足以弥补可沉淀部分的损失。对三个菌株以及通常被视为β-内酰胺酶抑制剂而非有效抗生素本身的β-内酰胺类克拉维酸也进行了类似观察。

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