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淋病奈瑟菌的细胞壁:青霉素对肽聚糖水解的增强作用。

Cell envelope of Neisseria gonorrhoeae: penicillin enhancement of peptidoglycan hydrolysis.

作者信息

Wegener W S, Hebeler B H, Morse S A

出版信息

Infect Immun. 1977 Dec;18(3):717-25. doi: 10.1128/iai.18.3.717-725.1977.

Abstract

The addition of 10 microgram of penicillin G per ml to log-phase cultures of Neisseria gonorrhoeae JW-31 (minimum inhibitory concentration for penicillin G, less than 0.007 microgram/ml) resulted in cellular lysis after a lag of 30 min. Penicillin markedly decreased the rate of peptidoglycan synthesis and enhanced the rate of hydrolysis of existing peptidoglycan. Hydrolysis was initiated immediately after addition of penicillin; cellular lysis did not occur until a considerable percentage of the peptidoglycan had been degraded. Cellular lysis was not due to penicillin per se but resulted from inhibition of cell wall synthesis. When cells were grown in media buffered with N-2-hydroxyethyl piperazine-N'-2-ethanesulfonic acid at pH 6, penicillin did not cause lysis; however, at this pH, peptidoglycan hydrolysis occurred and cells lost viability at the same rate as in the control (pH 7.2). We suggest that the stability of gonococci grown at pH 6 is related to increased stability of the outer membrane. The penicillin-enhanced rate of peptidoglycan hydrolysis decreased approximately 50% at pH 6.0. Penicillin-enhanced lysis, peptidoglycan hydrolysis, and loss of viability were also markedly reduced in cells grown at 28 degrees C.

摘要

每毫升对数期淋病奈瑟菌JW - 31培养物中添加10微克青霉素G(青霉素G的最低抑菌浓度小于0.007微克/毫升),经过30分钟的延迟后导致细胞裂解。青霉素显著降低了肽聚糖合成速率,并提高了现有肽聚糖的水解速率。青霉素添加后立即开始水解;直到相当比例的肽聚糖被降解,细胞裂解才会发生。细胞裂解并非由青霉素本身引起,而是由于细胞壁合成受到抑制。当细胞在pH值为6的N - 2 - 羟乙基哌嗪 - N'- 2 - 乙烷磺酸缓冲培养基中生长时,青霉素不会引起裂解;然而,在此pH值下,肽聚糖发生水解,细胞失去活力的速率与对照(pH 7.2)相同。我们认为在pH 6条件下生长的淋球菌的稳定性与外膜稳定性增加有关。在pH 6.0时,青霉素增强的肽聚糖水解速率降低了约50%。在28℃下生长的细胞中,青霉素增强的裂解、肽聚糖水解和活力丧失也显著降低。

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