Tang Y M, Travis E R, Wightman R M, Schneider A S
Department of Pharmacology and Neuroscience, Albany Medical College, New York 12208, USA.
J Neurochem. 2000 Feb;74(2):702-10. doi: 10.1046/j.1471-4159.2000.740702.x.
The effects of Na+ deprivation on local calcium signal decay and the rate of exocytotic secretion were measured in single bovine chromaffin cells to determine whether Na-Ca exchange influences the local cytosolic Ca2+ signal for neurohormone release. Na+ replacement with N-methylglucamine caused a marked slowing of the decay of the local Ca2+ signal near points of its initiation, as measured by high-resolution fluorescent Ca2+ imaging in the confocal laser scanning microscope. Na+ replacement also resulted in a doubling of the rate and magnitude of exocytotic secretion measured in single cells by high-resolution microamperometry. Release rates provide an independent measure of local active zone Ca2+. Five repetitive stimulations of the same cell in Na+-free, but not in Na+-containing, medium resulted in a progressively increasing rate of catecholamine release, suggesting an increasing level of active zone Ca2+ and a role of Na-Ca exchange activity in Ca2+ clearance between stimulations. As secretory activity and its triggering Ca2+ signals are known to be co-localized in active zones along the plasma membrane, the results suggest that Na-Ca exchange may influence the decay of the local Ca2+ signal for exocytotic secretion. This would be consistent with a contribution to local Ca2+ clearance by a novel mechanism utilizing the insertion of secretory vesicle Na-Ca exchangers into the plasma membrane during exocytosis.
在单个牛嗜铬细胞中测量了钠缺乏对局部钙信号衰减和胞吐分泌速率的影响,以确定钠钙交换是否影响神经激素释放的局部胞质钙信号。用N-甲基葡糖胺替代钠导致局部钙信号在其起始点附近的衰减明显减慢,这是通过共聚焦激光扫描显微镜中的高分辨率荧光钙成像测量的。钠替代还导致通过高分辨率微电流分析法在单细胞中测量的胞吐分泌速率和幅度增加了一倍。释放速率提供了局部活性区钙的独立测量。在无钠但不是含钠的培养基中对同一细胞进行五次重复刺激导致儿茶酚胺释放速率逐渐增加,这表明活性区钙水平增加以及钠钙交换活性在刺激之间的钙清除中起作用。由于已知分泌活性及其触发的钙信号共定位在沿质膜的活性区中,结果表明钠钙交换可能影响胞吐分泌的局部钙信号的衰减。这与一种新机制对局部钙清除的贡献一致,该机制利用分泌囊泡钠钙交换体在胞吐过程中插入质膜。