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CaV 2.2及CaV 2.1剪接变体在催产素和血管加压素释放视上核神经元中的表达

Expression of CaV 2.2 and splice variants of CaV 2.1 in oxytocin- and vasopressin-releasing supraoptic neurones.

作者信息

Wang D, Fisher T E

机构信息

Department of Physiology, College of Medicine, University of Saskatchewan, Saskatoon, Canada.

出版信息

J Neuroendocrinol. 2014 Feb;26(2):100-10. doi: 10.1111/jne.12127.

Abstract

The magnocellular neurosecretory cells (MNCs) release vasopressin (VP) and oxytocin (OT) from their axon terminals into the circulation and from their somata and dendrites to exert paracrine effects on other MNCs. MNCs express several types of voltage-gated Ca(2+) channels, including Ca(V)2.1 and Ca(V)2.2. These two channels types are similar in structure and function in other cells, but although influx of Ca(2+) through Ca(V)2.2 triggers the release of both OT and VP into the circulation, Ca(V)2.1 is involved in stimulating the release of VP but not OT. Release of OT from MNC somata is also triggered by Ca(V)2.2 but not Ca(V)2.1. These observations could be explained by differences in the level of expression of Ca(V)2.1 in VP and OT MNCs or by differences in the way that the two channels interact with the exocytotic apparatus. We used immunohistochemistry to confirm earlier work suggesting that MNCs express variants of Ca(V)2.1 lacking portions of an internal loop that enables the channels to interact with synaptic proteins. We used an antibody that would recognise both the full-length Ca(V)2.1 and the deletion variants to show that OT MNCs express fewer Ca(V)2.1 channels than do VP MNCs in both somata and axon terminals. We used the reverse transcriptase-polymerase chain reaction and immunocytochemistry to test whether MNCs express similar deletion variants of Ca(V)2.2 and were unable to find any evidence to support this. Our data suggest that the different roles that Ca(V)2.1 and Ca(V)2.2 play in MNC secretion may be a result of the different levels of expression of Ca(V)2.1 in VP and OT MNCs, as well as the expression in MNCs of deletion variants of Ca(V)2.1 that do not interact with exocytotic proteins and therefore may be less likely to mediate exocytotic release.

摘要

大细胞神经分泌细胞(MNCs)从其轴突终末释放血管加压素(VP)和催产素(OT)进入循环系统,并从其胞体和树突释放以对其他MNCs发挥旁分泌作用。MNCs表达几种类型的电压门控Ca(2+)通道,包括Ca(V)2.1和Ca(V)2.2。这两种通道类型在其他细胞中的结构和功能相似,但尽管通过Ca(V)2.2的Ca(2+)内流触发OT和VP释放进入循环系统,但Ca(V)2.1参与刺激VP释放而不参与OT释放。OT从MNC胞体的释放也由Ca(V)2.2触发而非Ca(V)2.1。这些观察结果可以通过VP和OT MNCs中Ca(V)2.1表达水平的差异或两种通道与胞吐装置相互作用方式的差异来解释。我们使用免疫组织化学来证实早期的研究工作,该工作表明MNCs表达Ca(V)2.1的变体,这些变体缺少使通道能够与突触蛋白相互作用的内部环的部分。我们使用一种既能识别全长Ca(V) 的抗体2.1和缺失变体表明,在胞体和轴突终末中,OT MNCs表达的Ca(V)2.1通道比VP MNCs少。我们使用逆转录聚合酶链反应和免疫细胞化学来测试MNCs是否表达类似的Ca(V)2.2缺失变体,但未找到任何证据支持这一点。我们的数据表明,Ca(V)2.1和Ca(V)2.2在MNC分泌中发挥的不同作用可能是由于VP和OT MNCs中Ca(V)2.1表达水平的差异,以及MNCs中不与胞吐蛋白相互作用因此可能不太可能介导胞吐释放的Ca(V)2.1缺失变体的表达。

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