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牛肾上腺髓质嗜铬细胞的质膜和囊泡谷氨酸转运体表达。

Plasma membrane and vesicular glutamate transporter expression in chromaffin cells of bovine adrenal medulla.

机构信息

Department of Biochemistry and Molecular Biology, Faculty of Pharmacy, Complutense University of Madrid, Madrid, Spain.

出版信息

J Neurosci Res. 2011 Jan;89(1):44-57. doi: 10.1002/jnr.22529.

Abstract

The study of the functional expression of glutamate signaling molecules in peripheral tissues has received relatively little attention. However, evidence is increasing for a role of glutamate as an extracellular signal mediator in endocrine systems, in addition to having an excitatory amino acid neurotransmitter role in the CNS. Chromaffin cells are good models of catecholaminergic neurons, in which previous work from our group demonstrated the existence of both functional glutamate receptors and specific exocytotic and nonexocytotic glutamate release. In this work, the presence of specific plasma membrane (EAATs) and vesicular glutamate (VGLUTs) transporters has been investigated by using confocal microscopy, flow cytometric analysis, Western blot, and qRT-PCR techniques. We found specific expression of EAAT3, EAAT2, VGLUT1, and VGLUT3 in about 95%, 65%, 55%, and 25%, respectively, of the whole chromaffin cell population. However, chromaffin cells do not express VGLUT2 and have a very low expression of EAAT1. VGLUTs are localized mainly in the membrane fraction, and EAATs share their subcellular location between membrane and cytosolic fractions. Their estimated molecular weights were about 70 kDa for EAAT2, about 65 kDa for EAAT3, about 50 kDa for VGLUT1, and about 60 kDa for VGLUT3. RT-qPCR techniques confirm the expression of these glutamate transporters at the mRNA level and show a different regulation by cytokines and glucocorticoids between VGLUT1 and -3 and EAAT2 and -3 subfamilies. These interesting results support the participation of these glutamate transporters in the process of glutamate release in chromaffin cells and in the regulation of their neurosecretory function in adrenal medulla.

摘要

谷氨酸信号分子在周围组织中的功能表达研究相对较少。然而,越来越多的证据表明,谷氨酸作为一种细胞外信号介质,除了在中枢神经系统中作为兴奋性氨基酸神经递质发挥作用外,还在内分泌系统中发挥作用。嗜铬细胞是儿茶酚胺能神经元的良好模型,我们之前的研究表明,嗜铬细胞中存在功能性谷氨酸受体,以及特定的胞吐和非胞吐谷氨酸释放。在这项工作中,通过共聚焦显微镜、流式细胞分析、Western blot 和 qRT-PCR 技术研究了特定的质膜 (EAATs) 和囊泡谷氨酸 (VGLUTs) 转运体的存在。我们发现 EAAT3、EAAT2、VGLUT1 和 VGLUT3 的特异性表达分别约为整个嗜铬细胞群体的 95%、65%、55%和 25%。然而,嗜铬细胞不表达 VGLUT2,并且 EAAT1 的表达水平非常低。VGLUTs 主要定位于质膜部分,而 EAATs 在质膜和胞质部分之间共享其亚细胞位置。它们的估计分子量分别约为 EAAT2 的 70 kDa、EAAT3 的 65 kDa、VGLUT1 的 50 kDa 和 VGLUT3 的 60 kDa。RT-qPCR 技术证实了这些谷氨酸转运体在 mRNA 水平上的表达,并显示了细胞因子和糖皮质激素对 VGLUT1 和 -3 以及 EAAT2 和 -3 亚家族的不同调节。这些有趣的结果支持这些谷氨酸转运体参与嗜铬细胞中谷氨酸释放的过程,并调节肾上腺髓质中的神经分泌功能。

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