Blaustein M P, Ector A C
Biochim Biophys Acta. 1976 Jan 21;419(2):295-308. doi: 10.1016/0005-2736(76)90355-2.
The influence of external cations on 45Ca2+ efflux from Ca2+ loaded synaptosomes has been examined. The synaptosomes were pre-loaded with 45Ca2+ by incubating the suspensions in potassium-rich media for 2 min. The suspensions were then diluted into "efflux" media containing a "normal" (5mM) K+ concentration; the content of Na+ and Ca2+ was varied, as noted below. Efflux of 45Ca2+ was measured for a 2-min period (except for "zero-time" samples), and was terminated by filtering the suspensions on 0.3 mum cellulose acetate filters. 45Ca2+ retained on the filters was determined by liquid scintillation spectroscopy. The difference between the 45Ca2+ in the "zero-time" samples (="Ca2+ load") and in the samples incubated for 2 min was taken as the 45Ca2+ efflux. 45Ca2+ loss into Ca2+ -free efflux media containing ethyleneglycol-bis-(beta-aminoethylether)-N,N'-tetraacetic acid (EGTA) was markedly influenced by the Na+ concentration: nearly 80% of the 45Ca2+ was lost from the synaptosomes if the media contained 132 mM Na+, but only about 7% was lost in 2 min if 97% of the Na+ was replaced mol-for-mol by choline. In media containing 1.2 mM Ca2+ and 132 mM Na+, the 45Ca2+ uptake by synaptosomes previously loaded with 40Ca2+ was significantly less than 45Ca2+ loss from synaptosomes loaded with 45Ca2+. Thus there was a net efflux of Ca2+ from the Ca2+ -loaded synaptosomes; this efflux was, presumably, Na+ dependent. In media containing 1.2 mM 40Ca2+ and only 4 mM Na+, the 45Ca2+ efflux from 45Ca2+ -loaded synaptosomes was significantly greater if most of the external Na+ (128 mM) was replaced isomotically by Li+ rather than by choline, guanidine or glucose. This observation may be evidence for a Ca2+ -Ca2+ exchange which is promoted by Li+. Both the Na+ -dependent and the Ca2+ -dependent Ca2+ effluxes were inhibited by Mn2+. The data are consistent with a Ca2+ carrier mechanism which can extrude Ca2+ in exchange for Na+ or for Ca2+, the latter being activated by Li+. These properties bear a striking resemblance to those of a Ca2+ efflux mechanism which has been characterized in squid axons. This mechanism may there fore have evolved fairly early on in the history of the animal kingdom.
研究了外部阳离子对负载钙的突触体中45Ca2+外流的影响。通过将悬浮液在富含钾的培养基中孵育2分钟,使突触体预先负载45Ca2+。然后将悬浮液稀释到含有“正常”(5mM)钾浓度的“外流”培养基中;如下所述,钠和钙的含量有所变化。在2分钟内(“零时间”样品除外)测量45Ca2+的外流,并通过在0.3μm醋酸纤维素滤膜上过滤悬浮液来终止。通过液体闪烁光谱法测定保留在滤膜上的45Ca2+。“零时间”样品中的45Ca2+(=“钙负载”)与孵育2分钟的样品中的45Ca2+之差作为45Ca2+外流。在含有乙二醇双(β-氨基乙醚)-N,N'-四乙酸(EGTA)的无钙外流培养基中,45Ca2+的损失受到钠浓度的显著影响:如果培养基中含有132mM钠,近80%的45Ca2+从突触体中损失,但如果97%的钠被等摩尔的胆碱取代,则在2分钟内仅损失约7%。在含有1.2mM钙和132mM钠的培养基中,先前负载40Ca2+的突触体对45Ca2+的摄取明显少于负载45Ca2+的突触体中45Ca2+的损失。因此,从负载钙的突触体中有钙的净外流;这种外流大概是依赖钠的。在含有1.2mM 40Ca2+且仅含4mM钠的培养基中,如果大部分外部钠(128mM)被等渗地用锂取代而不是用胆碱、胍或葡萄糖取代,则从负载45Ca2+的突触体中45Ca2+的外流显著增加。这一观察结果可能是锂促进钙-钙交换的证据。依赖钠和依赖钙的钙外流均受到锰的抑制。这些数据与一种钙载体机制一致,该机制可以将钙挤出以交换钠或钙,后者由锂激活。这些特性与枪乌贼轴突中已被表征的钙外流机制的特性惊人地相似。因此,这种机制可能在动物王国的历史早期就已经进化出来了。