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全长瞬时受体电位香草酸受体1通道介导钙信号,并可能在大鼠视上核血管加压素神经元的渗透压感受中发挥作用。

Full-length transient receptor potential vanilloid 1 channels mediate calcium signals and possibly contribute to osmoreception in vasopressin neurones in the rat supraoptic nucleus.

作者信息

Moriya Taiki, Shibasaki Rina, Kayano Tomohiko, Takebuchi Nami, Ichimura Momoko, Kitamura Naoki, Asano Atsushi, Hosaka Yoshinao Z, Forostyak Oksana, Verkhratsky Alexei, Dayanithi Govindan, Shibuya Izumi

机构信息

Laboratory of Veterinary Physiology, Joint Department of Veterinary Medicine, Faculty of Agriculture, Tottori University, Tottori, Japan; The United Graduate School of Veterinary Science, Yamaguchi University, Yamaguchi, Japan.

Laboratory of Veterinary Physiology, Joint Department of Veterinary Medicine, Faculty of Agriculture, Tottori University, Tottori, Japan.

出版信息

Cell Calcium. 2015 Jan;57(1):25-37. doi: 10.1016/j.ceca.2014.11.003. Epub 2014 Nov 15.

Abstract

Neurones in the supraoptic nucleus (SON) of the hypothalamus possess intrinsic osmosensing mechanisms, which are lost in transient receptor potential vanilloid 1 (Trpv1)-knock-out mice. The molecular nature of the osmosensory mechanism in SON neurones is believed to be associated with the N-terminal splice variant of Trpv1, although their entire molecular structures have not been hitherto identified. In this study, we sought for TRPV1-related molecules and their function in the rat SON. We performed RT-PCR and immunohistochemistry to detect TRPV1-related molecules in the SON, and patch-clamp and imaging of the cytosolic Ca(2+) concentration ([Ca(2+)]i) to measure responses to osmolality changes and TRPV-related drugs in acutely dissociated SON neurones of rats. RT-PCR analysis revealed full-length Trpv1 and a new N-terminal splice variant, Trpv1_SON (LC008303) in the SON. Positive immunostaining was observed using an antibody against the N-terminal portion of TRPV1 in arginine vasopressin (AVP)-immunoreactive neurones, but not in oxytocin (OT)-immunoreactive neurones. Approximately 20% of SON neurones responded to mannitol (50 mM) with increased action potential firing, inward currents, and [Ca(2+)]i mobilization. Mannitol-induced responses were observed in AVP neurones isolated from AVP-eGFP transgenic rats and identified by GFP fluorescence, but not in OT neurones isolated from OT-mRFP transgenic rats and identified by RFP fluorescence. The mannitol-induced [Ca(2+)]i responses were reversibly blocked by the non-selective TRPV antagonist, ruthenium red (10 μM) and the TRPV1 antagonists, capsazepine (10 μM) and BCTC (10 μM). Although the TRPV1 agonist, capsaicin (100 nM) evoked no response at room temperature, it triggered cationic currents and [Ca(2+)]i elevation when the temperature was increased to 36°C. These results suggest that AVP neurones in the rat SON possess functional full-length TRPV1. Moreover, differences between the responses to capsaicin or hyperosmolality obtained in rat SON neurones and those obtained from dorsal root ganglion neurones or TRPV1-expressing cells indicate that the osmoreceptor expressed in the SON may be a heteromultimer in which TRPV1 is co-assembled with some other, yet unidentified, molecules.

摘要

下丘脑视上核(SON)中的神经元具有内在的渗透压感受机制,而在瞬时受体电位香草酸亚型1(Trpv1)基因敲除小鼠中这种机制会丧失。尽管SON神经元中渗透压感受机制的完整分子结构迄今尚未确定,但人们认为其分子本质与Trpv1的N端剪接变体有关。在本研究中,我们探寻了大鼠SON中与TRPV1相关的分子及其功能。我们进行了逆转录聚合酶链反应(RT-PCR)和免疫组织化学以检测SON中与TRPV1相关的分子,并采用膜片钳技术以及对胞质钙离子浓度([Ca(2+)]i)进行成像,来测量急性分离的大鼠SON神经元对渗透压变化和TRPV相关药物的反应。RT-PCR分析显示SON中存在全长Trpv1和一种新的N端剪接变体Trpv1_SON(登录号LC008303)。在抗精氨酸加压素(AVP)免疫反应阳性神经元中,使用针对TRPV1 N端部分的抗体可观察到阳性免疫染色,但在抗催产素(OT)免疫反应阳性神经元中未观察到。约20%的SON神经元对甘露醇(50 mM)有反应,表现为动作电位发放增加、内向电流以及[Ca(2+)]i动员。在从AVP-eGFP转基因大鼠分离并通过绿色荧光蛋白(GFP)荧光鉴定的AVP神经元中观察到了甘露醇诱导的反应,但在从OT-mRFP转基因大鼠分离并通过红色荧光蛋白(RFP)荧光鉴定的OT神经元中未观察到。甘露醇诱导的[Ca(2+)]i反应可被非选择性TRPV拮抗剂钌红(10 μM)以及TRPV1拮抗剂辣椒素受体拮抗剂(10 μM)和BCTC(10 μM)可逆性阻断。尽管TRPV1激动剂辣椒素(100 nM)在室温下未引发反应,但当温度升至36°C时,它会触发阳离子电流并使[Ca(2+)]i升高。这些结果表明大鼠SON中的AVP神经元具有功能性全长TRPV1。此外,大鼠SON神经元对辣椒素或高渗刺激的反应与背根神经节神经元或表达TRPV1的细胞的反应之间存在差异,这表明SON中表达的渗透压感受器可能是一种异源多聚体,其中TRPV1与其他一些尚未确定的分子共同组装。

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