Gonçalves P P, Meireles S M, Gravato C, Vale M G
Departamento de Biologia, Universidade de Aveiro, Portugal.
Neurosci Lett. 1998 May 15;247(2-3):87-90. doi: 10.1016/s0304-3940(98)00256-0.
Synaptic vesicles isolated from sheep brain cortex exhibit an ATP-dependent Ca2+ accumulation that is inhibited by the protonophore uncoupler carbonyl cyanide m-chorophenylhydrazone (CCCP) and completely released by the Ca2+ ionophore ionomycin. This transport activity was sensitive to the V-type ATPase inhibitor, bafilomycin, but not to the P-type ATPase inhibitor, vanadate. We also observed that the proton gradient, established across the synaptic vesicle membranes in the presence of ATP, is partially dissipated by the addition of Ca2+ (100-860 microM) in correlation to an increase of ATP hydrolysis by the H+-pumping ATPase. In contrast, the activity of the H+-ATPase, measured under uncoupling conditions (presence of CCCP), appears to be unaltered by the calcium ion. The Ca2+-induced H+ release visualized by fluorescence quenching of acridine orange correlates well with the Ca2+ uptake determined isotopically. These results indicate that synaptic vesicles accumulate Ca2+, via a low affinity Ca2+-H+ antiport system energized by the protonmotive force originated from the H+-pumping ATPase activity.
从绵羊大脑皮层分离出的突触小泡表现出一种依赖ATP的Ca2+积累,这种积累受到质子载体解偶联剂羰基氰化物间氯苯腙(CCCP)的抑制,并被Ca2+离子载体离子霉素完全释放。这种转运活性对V型ATP酶抑制剂巴弗洛霉素敏感,但对P型ATP酶抑制剂钒酸盐不敏感。我们还观察到,在ATP存在的情况下跨突触小泡膜建立的质子梯度,会因添加Ca2+(100 - 860 microM)而部分消散,这与H+泵ATP酶水解ATP的增加相关。相反,在解偶联条件下(存在CCCP)测量的H+-ATP酶活性似乎不受钙离子影响。通过吖啶橙荧光猝灭观察到的Ca2+诱导的H+释放与同位素测定的Ca2+摄取密切相关。这些结果表明,突触小泡通过一种低亲和力的Ca2+-H+反向转运系统积累Ca2+,该系统由源自H+泵ATP酶活性的质子动力提供能量。