Carrano L, Bucci C, De Pascalis R, Lavitola A, Manna F, Corti E, Bruni C B, Alifano P
Biosearch Italia s.p.a., Gerenzano (VA).
Antimicrob Agents Chemother. 1998 Mar;42(3):571-8. doi: 10.1128/AAC.42.3.571.
Bicyclomycin is a commercially important antibiotic that has been shown to be effective against many gram-negative bacteria. Genetic and biochemical evidence indicates that the antibiotic interferes with RNA metabolism in Escherichia coli by inhibiting the activity of transcription termination factor Rho. However, the precise mechanism of inhibition is not completely known. In this study we have used in vitro transcription assays to analyze the effects of bicyclomycin on the termination step of transcription. The Rho-dependent transcription termination region located within the hisG cistron of Salmonella typhimurium has been used as an experimental system. The possible interference of the antibiotic with the various functions of factor Rho, such as RNA binding at the primary site, ATP binding, and hexamer formation, has been investigated by RNA gel mobility shift, photochemical cross-linking, and gel filtration experiments. The results of these studies demonstrate that bicyclomycin does not interfere with the binding of Rho to the loading site on nascent RNA. Binding of the factor to ATP is not impeded, on the contrary, the antibiotic appears to decrease the apparent equilibrium dissociation constant for ATP in photochemical cross-linking experiments. The available evidence suggests that this decrease might be due to an interference with the correct positioning of ATP within the nucleotide-binding pocket leading b an inherent block of ATP hydrolysis. Possibly, as a consequence of this interference, the antibiotic also prevents ATP-dependent stabilization of Rho hexamers.
双环霉素是一种具有重要商业价值的抗生素,已证明对多种革兰氏阴性菌有效。遗传和生化证据表明,该抗生素通过抑制转录终止因子Rho的活性来干扰大肠杆菌中的RNA代谢。然而,其精确的抑制机制尚不完全清楚。在本研究中,我们使用体外转录分析来研究双环霉素对转录终止步骤的影响。位于鼠伤寒沙门氏菌hisG顺反子内的依赖Rho的转录终止区域被用作实验系统。通过RNA凝胶迁移率变动分析、光化学交联和凝胶过滤实验,研究了该抗生素对Rho因子各种功能的可能干扰,如在初级位点的RNA结合、ATP结合和六聚体形成。这些研究结果表明,双环霉素不会干扰Rho与新生RNA上加载位点的结合。该因子与ATP的结合未受阻碍,相反,在光化学交联实验中,该抗生素似乎降低了ATP的表观平衡解离常数。现有证据表明,这种降低可能是由于干扰了ATP在核苷酸结合口袋中的正确定位,导致ATP水解的内在阻滞。可能由于这种干扰,该抗生素还阻止了Rho六聚体的ATP依赖性稳定。