Lee Suk-Ho, Kim Myoung-Hwan, Lee Ju-Young, Lee Sang Hun, Lee Doyun, Park Kyeong Han, Ho Won-Kyung
National Research Laboratory for Cell Physiology, Department of Physiology, Seoul National University College of Medicine, Chongno-Ku, Seoul 110-799, South Korea.
Ann N Y Acad Sci. 2007 Mar;1099:396-412. doi: 10.1196/annals.1387.011.
We investigated Ca2+ clearance mechanisms (CCMs) at the axon terminals of mammalian central neurons: neurohypophysial (NHP) axon terminals and calyces of Held. Ca2+ transients were evoked by applying a short depolarization pulse via a patch pipette containing Ca2+ indicator dye. Quantitative analysis of the Ca2+ decay phases revealed that Na+/Ca2+ exchange (Na/CaX) is a major CCM at both axon terminals. In contrast, no Na/CaX activity was found in the somata of NHP axon terminals (supraoptic magnocellular neurons), indicating that the distribution of Na+/Ca2+ exchangers is polarized. Intracellular dialysis of axon terminals with a K+-free pipette solution attenuated the Na/CaX activities by 90% in the NHP axon terminals and by 60% at the calyx of Held, indicating that K+-dependent Na+/Ca2+ exchangers are involved. Studying the effects of specific inhibitors of smooth endoplasmic reticulum Ca2+-ATPase (SERCA) and plasma membrane Ca2+-ATPase (PMCA) on the Ca2+ decay rate revealed that PMCA contributed 23% of total Ca2+ clearance, but that SERCA made no contribution at the calyx of Held. The contribution of mitochondria was negligible for small Ca2+ transients, but became apparent at peak Ca2+ levels higher than 2.5 microM. When mitochondrial function was inhibited, the dependence of CCMs on [Ca2+]i at the calyx of Held showed saturation kinetics with K(1/2) = 1.7 microM, suggesting that the Na/CaX activity is saturated at high [Ca2+]i. The presynaptic Na+/Ca2+ exchanger activity, which competes for cytosolic Ca2+ with mitochondria, may contribute to nonplastic synaptic transmission at these axon terminals.
我们研究了哺乳动物中枢神经元轴突终末的钙离子清除机制(CCMs):神经垂体(NHP)轴突终末和 Held 壶腹。通过含有钙离子指示剂染料的膜片吸管施加短去极化脉冲来诱发钙离子瞬变。对钙离子衰减阶段的定量分析表明,钠/钙交换(Na/CaX)是两种轴突终末的主要 CCM。相比之下,在 NHP 轴突终末(视上大细胞神经元)的胞体中未发现 Na/CaX 活性,这表明钠/钙交换体的分布是极化的。用无钾吸管溶液对轴突终末进行细胞内透析,使 NHP 轴突终末的 Na/CaX 活性降低了 90%,在 Held 壶腹降低了 60%,表明涉及钾离子依赖性钠/钙交换体。研究内质网钙 ATP 酶(SERCA)和质膜钙 ATP 酶(PMCA)的特异性抑制剂对钙离子衰减率的影响表明,PMCA 对总钙离子清除的贡献为 23%,但 SERCA 在 Held 壶腹没有贡献。对于小的钙离子瞬变,线粒体的贡献可忽略不计,但在钙离子峰值水平高于 2.5 microM 时变得明显。当线粒体功能受到抑制时,Held 壶腹处 CCMs 对胞内钙离子浓度([Ca2+]i)的依赖性呈现饱和动力学,半饱和常数(K(1/2))= 1.7 microM,这表明在高[Ca2+]i 时 Na/CaX 活性饱和。与线粒体竞争胞质钙离子的突触前钠/钙交换体活性可能有助于这些轴突终末的非可塑性突触传递。