Schnetkamp P P
Department of Medical Biochemistry, Faculty of Medicine, University of Calgary, Alberta, Canada.
Cell Calcium. 1995 Oct;18(4):322-30. doi: 10.1016/0143-4160(95)90028-4.
The outer segments of vertebrate retinal rod photoreceptors (ROS) exhibit dynamic Ca2+ fluxes. In darkness, Ca2+ continuously enters via the light-sensitive, cGMP-gated channels and this requires the presence of a powerful Ca2+ extrusion mechanism in the ROS plasma membrane. Our laboratory has characterized a Na/Ca+K exchanger in the ROS plasma membrane, which utilizes both inward Na+ gradient and outward K+ gradient to extrude Ca2+. Here, I review our work on the functional properties of the Na/Ca+K exchanger including the stoichiometry, ion binding sites and regulation of Ca2+ transport via Na/Ca+K exchange. Inactivation of the Ca2+ extrusion mode of the Na/Ca+K exchanger will be discussed as a mechanism to prevent lowering of cytosolic free Ca2+ to undesirably low values of < 1 nM that are expected from the coupling stoichiometry of the Na/Ca+K exchanger and that are expected to occur when Ca2+ influx via the cGMP-gated channels is interrupted during saturation of rod photoreceptors in bright light. This review also reexamines the contribution of internal Ca2+ stores (i.e. disks) to Ca2+ homeostasis in ROS.
脊椎动物视网膜视杆光感受器(ROS)的外段表现出动态的Ca2+通量。在黑暗中,Ca2+通过对光敏感的cGMP门控通道持续进入,这需要在ROS质膜中存在强大的Ca2+外排机制。我们实验室已经对ROS质膜中的Na/Ca+K交换体进行了表征,它利用内向的Na+梯度和外向的K+梯度来排出Ca2+。在这里,我回顾了我们关于Na/Ca+K交换体功能特性的研究工作,包括化学计量、离子结合位点以及通过Na/Ca+K交换对Ca2+转运的调节。将讨论Na/Ca+K交换体Ca2+外排模式的失活,这是一种防止细胞质游离Ca2+降低到低于1 nM的不期望的低值的机制,这种低值是根据Na/Ca+K交换体的偶联化学计量预期的,并且预计在强光下视杆光感受器饱和期间通过cGMP门控通道的Ca2+内流中断时会出现。这篇综述还重新审视了内部Ca2+储存(即圆盘)对ROS中Ca2+稳态的贡献。