Krulwich T A, Davidson L F, Filip S J, Zuckerman R S, Guffanti A A
J Biol Chem. 1978 Jul 10;253(13):4599-603.
The acidophilic and thermophilic bacterium, Bacillus acidocaldarius maintains a cytoplasmic pH between 5.85 and 6.31 over a range of external pH from 2.0 to 4.5. Consistently, the pH optimum of beta-galactosidase, as assayed in cell extracts, is between pH 6.0 and 6.5. An electrical potential (delta-psi), interior positive, is also maintained across the membrane. A delta-psi of approximately 34 mV was calculated from determinations of thiocyanate uptake by cells at pH 3.5. Addition of the proton conductor carbonyl cyanide m-chlorophenylhydrazone increased the delta-psi. Treatment of cells with valinomycin (in the absence of external potassium ions) or high concentrations of thiocyanate, to abolish the delta psi, resulted in collapse of the transmembrane proton gradient (delta pH). Active transport of methylthio-beta, D-galactoside occurred optimally at pH 3.5. Transport of the galactoside was inhibited by various compounds which could dissipate the transmembrane delta pH and by respiratory inhibitors. A decrease in the delta pH and an increase in the delta psi occurred upon addition of methylthio-beta, D-galactoside to cells of B. acidocaldarius. Thus the transport of this solute appears to involve an electrogenic symport with protons. The transport system is most active at 50 degrees C and shows little activity at 25 degrees C, although the delta pH is the same at the two temperatures. Gramicidin inhibits methylthio-beta, D-galactoside transport equally effectively at 50 degrees C and 25 degrees C, while nigericin inhibits only after a lag at 25 degrees C.
嗜酸嗜热菌嗜酸热硫化叶菌(Bacillus acidocaldarius)在外部pH值为2.0至4.5的范围内,可将细胞质pH维持在5.85至6.31之间。同样,在细胞提取物中检测到的β-半乳糖苷酶的最适pH在6.0至6.5之间。细胞膜还维持着内部为正的电势(Δψ)。通过测定pH 3.5时细胞对硫氰酸盐的摄取量,计算出Δψ约为34 mV。添加质子导体羰基氰化物间氯苯腙可增加Δψ。用缬氨霉素(在无外部钾离子的情况下)或高浓度硫氰酸盐处理细胞以消除Δψ,会导致跨膜质子梯度(ΔpH)崩溃。甲硫基-β,D-半乳糖苷的主动转运在pH 3.5时最为活跃。半乳糖苷的转运受到各种能够消除跨膜ΔpH的化合物以及呼吸抑制剂的抑制。向嗜酸热硫化叶菌细胞中添加甲硫基-β,D-半乳糖苷后,ΔpH降低,Δψ增加。因此,这种溶质的转运似乎涉及与质子的电中性同向转运。该转运系统在50℃时最活跃,在25℃时活性很低,尽管两个温度下的ΔpH相同。短杆菌肽在50℃和25℃时对甲硫基-β,D-半乳糖苷转运的抑制效果相同,而尼日利亚菌素仅在25℃时滞后一段时间后才产生抑制作用。