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瞬时受体电位香草酸亚型1(TRPV1)通道与线粒体钙穿梭机制之间的特殊串扰控制着痛觉。

Privileged crosstalk between TRPV1 channels and mitochondrial calcium shuttling machinery controls nociception.

作者信息

Nita Iulia I, Caspi Yaki, Gudes Sagi, Fishman Dimitri, Lev Shaya, Hersfinkel Michal, Sekler Israel, Binshtok Alexander M

机构信息

Department of Physiology and Cell Biology, Faculty of Health Sciences, Ben-Gurion University of the Negev, 84105, Israel.

Department of Medical Neurobiology, Institute for Medical Research Israel-Canada, Faculty of Medicine, The Hebrew University, Jerusalem 91120, Israel; The Edmond and Lily Safra Center for Brain Sciences, The Hebrew University, Jerusalem 91120, Israel.

出版信息

Biochim Biophys Acta. 2016 Dec;1863(12):2868-2880. doi: 10.1016/j.bbamcr.2016.09.009. Epub 2016 Sep 11.

Abstract

The nociceptive noxious heat-activated receptor - TRPV1, conducts calcium and sodium, thus producing a depolarizing receptor potential, leading to activation of nociceptive neurons. TRPV1-mediated calcium and sodium influx is negatively modulated by calcium, via calcium-dependent desensitization of TRPV1 channels. A mitochondrial Ca uniporter - MCU, controls mitochondrial Ca entry while a sodium/calcium transporter - NCLX shapes calcium and sodium transients by mediating sodium entry into and removing calcium from the mitochondria. The functional interplay between TRPV1, MCU and NCLX, in controlling the cytosolic and mitochondrial calcium and sodium transients and subsequently the nociceptive excitability, is poorly understood. Here, we used cytosolic and mitochondrial fluorescent calcium and sodium imaging together with electrophysiological recordings of TRPV1-induced currents in HEK293T cells and nociceptor-like dissociated rat dorsal root ganglion neurons, while modulating NCLX or MCU expression using specific small interfering RNA (siNCLX). We show that the propagation of the TRPV1-induced cytosolic calcium and sodium fluxes into mitochondria is dependent on coordinated activity of NCLX and MCU. Thus, knocking-down of NCLX triggers down regulation of MCU dependent mitochondrial Ca uptake. This in turn decreases rate and amplitude of TRPV1-mediated cytosolic calcium, which inhibits capsaicin-induced inward current and neuronal firing. TRPV1-mediated currents were fully rescued by intracellular inclusion of the fast calcium chelator BAPTA. Finally, NCLX controls capsaicin-induced cell death, by supporting massive mitochondrial Ca shuttling. Altogether, our results suggest that NCLX, by regulating cytosolic and mitochondrial ionic transients, modulates calcium-dependent desensitization of TRPV1 channels, thereby, controlling nociceptive signaling.

摘要

伤害性热激活受体——TRPV1,可传导钙和钠,从而产生去极化受体电位,导致伤害性神经元激活。TRPV1介导的钙和钠内流受到钙的负调节,通过TRPV1通道的钙依赖性脱敏作用。线粒体钙单向转运体——MCU,控制线粒体钙内流,而钠/钙转运体——NCLX,通过介导钠进入线粒体和从线粒体清除钙,塑造钙和钠瞬变。TRPV1、MCU和NCLX在控制细胞质和线粒体钙及钠瞬变以及随后的伤害性兴奋性方面的功能相互作用,目前了解甚少。在这里,我们使用细胞质和线粒体荧光钙和钠成像,以及在HEK293T细胞和伤害感受器样解离大鼠背根神经节神经元中对TRPV1诱导电流的电生理记录,同时使用特异性小干扰RNA(siNCLX)调节NCLX或MCU的表达。我们表明,TRPV1诱导的细胞质钙和钠通量向线粒体的传播依赖于NCLX和MCU的协同活动。因此,敲低NCLX会触发依赖于MCU的线粒体钙摄取的下调。这反过来又降低了TRPV1介导的细胞质钙的速率和幅度,从而抑制辣椒素诱导的内向电流和神经元放电。通过细胞内加入快速钙螯合剂BAPTA,TRPV1介导的电流完全得到恢复。最后,NCLX通过支持大量线粒体钙穿梭来控制辣椒素诱导的细胞死亡。总之,我们的结果表明,NCLX通过调节细胞质和线粒体离子瞬变,调节TRPV1通道的钙依赖性脱敏,从而控制伤害性信号传导。

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