Law D J, Dajani A S
Antimicrob Agents Chemother. 1978 Mar;13(3):473-8. doi: 10.1128/AAC.13.3.473.
Viridin B, a bacteriocin produced by Streptococcus mitis (mitior), is bactericidal to Neisseria sicca. Oxygen consumption by actively growing N. sicca cultures ceased immediately upon exposure to viridin B. Adenosine triphosphate production was slightly enhanced within 1 h of exposure to the bacteriocin but was subsequently repressed. The uptake and incorporation of glucose was prevented in the presence of viridin B. The bacteriocin also blocked uptake of an amino acid mixture in chloramphenicol-pretreated cells. Pretreatment or concomitant treatment with a variety of antibiotics known to inhibit specific synthetic pathways did not alter the inhibition of macromolecular synthesis produced by the bacteriocin. Although viridin B blocks protein and nucleic acid syntheses, no degradation of such macromolecules was observed. The inhibitory effects of viridin B on macromolecular synthesis and on viability required the presence of sufficient nutrients to allow active metabolism of N. sicca. The bacteriocin did not inhibit viability or macromolecular synthesis in anaerobically incubated N. sicca. Thus, active, oxidative metabolism by N. sicca cells is essential for viridin B action. A model for viridin B action is proposed.
绿菌素B是缓症链球菌(轻链球菌)产生的一种细菌素,对干燥奈瑟菌具有杀菌作用。活跃生长的干燥奈瑟菌培养物在接触绿菌素B后,其耗氧量立即停止。在接触细菌素1小时内,三磷酸腺苷的产生略有增强,但随后受到抑制。在绿菌素B存在的情况下,葡萄糖的摄取和掺入被阻止。该细菌素还阻断了氯霉素预处理细胞中氨基酸混合物的摄取。用已知抑制特定合成途径的多种抗生素进行预处理或联合处理,并不会改变细菌素对大分子合成的抑制作用。尽管绿菌素B会阻断蛋白质和核酸的合成,但未观察到此类大分子的降解。绿菌素B对大分子合成和生存能力的抑制作用需要有足够的营养物质存在,以支持干燥奈瑟菌的活跃代谢。该细菌素在厌氧培养的干燥奈瑟菌中不会抑制其生存能力或大分子合成。因此,干燥奈瑟菌细胞的活跃氧化代谢对于绿菌素B的作用至关重要。本文提出了绿菌素B作用的模型。