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[6-氮杂胞苷对柔膜菌纲的抑制作用及其推测机制]

[The inhibitory action of 6-azacytidine on Mollicutes and its proposed mechanism].

作者信息

Skripal' I G, Babichev V V, Bezuglyĭ S V, Egorov O V, Korobkova E S, Malinovskaia L P, Panchenko L P, Tokovenko I P, Shalamaĭ A S, Alekseeva I V

出版信息

Mikrobiol Zh (1978). 1993 Mar-Apr;55(2):99-104.

PMID:7684488
Abstract

6-Azacytidine (6-AC) is shown to have an inhibitory effect on the Mollicutes of the different systematic position. The growth of type strains of Mollicutes (Acholeplasma laidlawii PG-8, Mycoplasma pneumoniae FH and M. fermentans PG-18) completely ceased in the nutrient medium at concentration of the above substance in it within the range of 125-250 micrograms/ml. 50% inhibiting concentration of 6-AC equaled: for M. fermentans PG-8: 23.43 micrograms/ml; M. pneumoniae FN: 46.8 micrograms/ml; Acholeplasma laidlawii PG-8: 62.5 micrograms/ml. 6-AC concentration 5 micrograms/ml decreased the process of DNA-dependent DNA synthesis in the in vitro system more than by 60%. 6-AC exerted less effect on the DNA-dependent RNA synthesis in the in vitro system: at different concentrations of 6-AC (up to 400 micrograms/ml) RNA synthesis decreased only by 20%. Translation on ribosomes of Mollicutes in the in vitro system completely ceased at 6-AC concentration 100 micrograms/ml. The results obtained indicate that for 6-AC in cells of Mollicutes and, possibly, for other microorganisms there are two targets: ribosomes and DNA-dependent DNA-polymerase. Total effect of blocking of the translation and replication processes by 6-azacytidine causes death of Mollicutes. Since 6-AC has no harmful effect on the human cells, it can be used as an efficient method for treatment of respiratory and urogenital diseases induced by Mollicutes.

摘要

6-氮杂胞苷(6-AC)对不同系统位置的柔膜菌纲具有抑制作用。当营养培养基中上述物质的浓度在125 - 250微克/毫升范围内时,柔膜菌纲模式菌株(莱氏无胆甾原体PG-8、肺炎支原体FH和发酵支原体PG-18)的生长完全停止。6-AC的50%抑制浓度分别为:发酵支原体PG-8:23.43微克/毫升;肺炎支原体FN:46.8微克/毫升;莱氏无胆甾原体PG-8:62.5微克/毫升。6-AC浓度为5微克/毫升时,体外系统中依赖DNA的DNA合成过程减少了60%以上。6-AC对体外系统中依赖DNA的RNA合成影响较小:在不同浓度的6-AC(高达400微克/毫升)下,RNA合成仅减少20%。体外系统中,当6-AC浓度为100微克/毫升时,柔膜菌纲核糖体上的翻译完全停止。所得结果表明,对于柔膜菌纲细胞中的6-AC,可能对于其他微生物也存在两个作用靶点:核糖体和依赖DNA的DNA聚合酶。6-氮杂胞苷对翻译和复制过程的阻断总效应导致柔膜菌纲死亡。由于6-AC对人体细胞无有害影响,它可作为治疗由柔膜菌纲引起的呼吸道和泌尿生殖系统疾病的有效方法。

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