Houlihan Adam J, Mantovani Hilário C, Russell James B
Department of Microbiology, Cornell University, Wing Hall, Ithaca, NY 14853, USA.
FEMS Microbiol Lett. 2004 Feb 9;231(1):27-32. doi: 10.1016/S0378-1097(03)00922-4.
The bacteriocin, bovicin HC5, catalyzed potassium efflux from Streptococcus bovis JB1, and this activity was highly pH dependent. When the pH was near neutral, glucose-energized cells were not affected by bovicin HC5, but the intracellular steady-state concentration of potassium decreased at acidic pH values. The idea that pH was affecting bovicin HC5 binding was supported by the observation that acidic pH also enhanced the efflux of potassium from non-energized cells that had been loaded with potassium. The relationship between bovicin HC5 concentration and potassium depletion was a saturation function, but cooperativity plots indicated that the binding of one bovicin molecule to the cell membrane facilitated the binding of another.
细菌素bovicin HC5可催化牛链球菌JB1的钾离子外流,且该活性高度依赖于pH值。当pH值接近中性时,葡萄糖供能的细胞不受bovicin HC5影响,但在酸性pH值下,细胞内钾离子的稳态浓度会降低。酸性pH值也会增强已加载钾离子的非供能细胞的钾离子外流,这一观察结果支持了pH值影响bovicin HC5结合的观点。bovicin HC5浓度与钾离子消耗之间的关系呈饱和函数,但协同作图表明,一个bovicin分子与细胞膜的结合促进了另一个分子的结合。