Nelson M T, Blaustein M P
J Membr Biol. 1982;69(3):213-23. doi: 10.1007/BF01870400.
Presynaptic GABAergic nerve terminals accumulate gamma-aminobutyric acid (GABA) by a sodium-dependent carrier mechanism in which two Na+ are co-transported with one GABA. We have examined the influence of external GABA and cations on GABA efflux from 3H-GABA loaded rat brain synaptosomes, to determine whether or not the carriers can also mediate GABA efflux. We observed that, in Ca-free media (to minimize Ca-dependent, evoked release), external GABA promotes GABA efflux when the medium contains Na+, but inhibits GABA efflux in the absence of Na+. The efflux of GABA into Ca-free media is stimulated by depolarization (either with veratridine or increased external K+). These data, and published data on the internal Na+ dependence of GABA efflux into Ca-free media, indicate that exiting GABA is cotransported with Na+. The stimulatory effect of depolarization is consistent with efflux of Na+ along with the uncharged GABA. The (carrier-mediated) efflux is also stimulated when the carriers cycle inward with Na+ + GABA. The inhibitory effect of GABA in Na+-free media implies that GABA can bind to unloaded carriers and that the carriers loaded only with GABA cycle very slowly, if at all. Our data, and data from the literature, can be fitted to a simple model with sequential binding of solutes: external GABA binds to the carrier first, and only the free or fully-loaded (with 2Na+ + 1GABA) carriers can cycle. Other binding sequences and random binding, do not fit the experimental observations.
突触前GABA能神经末梢通过一种钠依赖性载体机制积累γ-氨基丁酸(GABA),即两个Na⁺与一个GABA协同转运。我们研究了细胞外GABA和阳离子对³H-GABA负载的大鼠脑突触体中GABA流出的影响,以确定这些载体是否也能介导GABA流出。我们观察到,在无钙培养基中(以尽量减少钙依赖性的诱发释放),当培养基中含有Na⁺时,细胞外GABA促进GABA流出,但在无Na⁺时则抑制GABA流出。GABA向无钙培养基中的流出受到去极化(用藜芦碱或增加细胞外K⁺)的刺激。这些数据以及已发表的关于GABA向无钙培养基中流出的内部Na⁺依赖性的数据表明,流出的GABA与Na⁺协同转运。去极化的刺激作用与Na⁺与不带电荷的GABA一起流出是一致的。当载体与Na⁺ + GABA向内循环时,(载体介导的)流出也会受到刺激。GABA在无Na⁺培养基中的抑制作用意味着GABA可以与空载载体结合,并且仅装载GABA的载体即使能循环也非常缓慢。我们的数据以及文献数据可以拟合到一个溶质顺序结合的简单模型:细胞外GABA首先与载体结合,只有游离的或完全装载(2Na⁺ + 1GABA)的载体才能循环。其他结合顺序和随机结合不符合实验观察结果。