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钾离子依赖性钠钙交换体在大鼠视上核大细胞神经元中的分布向轴突终末极化。

Distribution of K+-dependent Na+/Ca2+ exchangers in the rat supraoptic magnocellular neuron is polarized to axon terminals.

作者信息

Kim Myoung-Hwan, Lee Sang-Hyuk, Park Kyeong Han, Ho Won-Kyung, Lee Suk-Ho

机构信息

Department of Physiology, Seoul National University College of Medicine, Chongno-Ku, Seoul, 110-799, Korea.

出版信息

J Neurosci. 2003 Dec 17;23(37):11673-80. doi: 10.1523/JNEUROSCI.23-37-11673.2003.

Abstract

Neurons are polarized into compartments such as the soma, dendrites, and axon terminals, each of which has highly specialized functions. To test whether Ca2+ is differently handled in different compartments of a neuron, we investigated Ca2+ clearance mechanisms in somata of supraoptic magnocellular neurosecretory cells (MNCs) and in their axon terminals located in neurohypophyses. Using patch-clamp and microfluorometry techniques, Ca2+ transients were evoked by depolarizing pulses. Endogenous Ca2+ binding ratios (kappaS) and Ca2+ clearance rates were calculated from the decay phases of Ca2+ transients according to the single compartment model. Mean values of kappaS were 79 +/- 2.6 in somata of MNCs and 187 +/- 19 in axon terminals. Ca2+ clearance rate in axon terminals, which were calculated from time derivative of Ca2+ decay and the kappaS values, were approximately threefold higher than in somata. In response to external Na+ reduction, Ca2+ clearance rates were reduced by 65% in axon terminals, but did not change in somata. Immunohistochemical assays confirmed that K+-dependent Na+/Ca2+ exchanger (NCKX2) was specifically localized to neurohypophysial axon terminals and was not found in somata. In somata, inhibition of sarcoendoplasmic reticulum Ca2+-ATPase (SERCA) pumps, mitochondrial Ca2+-uniporter, and plasma membrane Ca2+-ATPase (PMCA) pumps decreased Ca2+ clearance rate by 48, 27, and 21%, respectively. These results suggest that neurohypophysial axon terminals have greater Ca2+ clearance power than somata because of the specific localization of NCKX2, and that Ca2+ clearance in somata of MNCs is mediated by SERCA pumps, mitochondrial uniporter, and PMCA pumps.

摘要

神经元被极化成分隔区域,如胞体、树突和轴突末端,每个区域都有高度专业化的功能。为了测试钙离子(Ca2+)在神经元的不同区域是否有不同的处理方式,我们研究了视上核大细胞神经分泌细胞(MNCs)胞体及其位于神经垂体的轴突末端的Ca2+清除机制。使用膜片钳和显微荧光测定技术,通过去极化脉冲诱发Ca2+瞬变。根据单室模型,从Ca2+瞬变的衰减阶段计算内源性Ca2+结合比率(kappaS)和Ca2+清除率。MNCs胞体中kappaS的平均值为79±2.6,轴突末端为187±19。根据Ca2+衰减的时间导数和kappaS值计算得出的轴突末端Ca2+清除率大约是胞体的三倍。响应外部钠离子(Na+)减少,轴突末端的Ca2+清除率降低了65%,但胞体中的Ca2+清除率没有变化。免疫组织化学分析证实,钾离子依赖性钠钙交换体(NCKX2)特异性定位于神经垂体轴突末端,在胞体中未发现。在胞体中,抑制肌浆网Ca2+-ATP酶(SERCA)泵、线粒体Ca2+单向转运体和质膜Ca2+-ATP酶(PMCA)泵分别使Ca2+清除率降低了48%、27%和21%。这些结果表明,由于NCKX2的特异性定位,神经垂体轴突末端比胞体具有更强的Ca2+清除能力,并且MNCs胞体中的Ca2+清除是由SERCA泵、线粒体单向转运体和PMCA泵介导的。

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