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脂质筏和鞘磷脂在三叉神经感觉神经元和外周神经末梢瞬时受体电位通道的Ca2+门控中的作用证据。

Evidence for the role of lipid rafts and sphingomyelin in Ca2+-gating of Transient Receptor Potential channels in trigeminal sensory neurons and peripheral nerve terminals.

作者信息

Sághy Éva, Szőke Éva, Payrits Maja, Helyes Zsuzsanna, Börzsei Rita, Erostyák János, Jánosi Tibor Zoltán, Sétáló György, Szolcsányi János

机构信息

Department of Pharmacology and Pharmacotherapy, Faculty of Medicine, University of Pécs, Pécs, Hungary; Szentágothai Research Center, University of Pécs, Hungary.

Department of Pharmacology and Pharmacotherapy, Faculty of Medicine, University of Pécs, Pécs, Hungary; Szentágothai Research Center, University of Pécs, Hungary; MTA-PTE Chronic Pain Research Group, Pécs, Hungary.

出版信息

Pharmacol Res. 2015 Oct;100:101-16. doi: 10.1016/j.phrs.2015.07.028. Epub 2015 Jul 31.

Abstract

Transient Receptor Potential (TRP) cation channels, such as TRP Vanilloid 1 and TRP Ankyrin repeat domain 1 (TRPV1 and TRPA1) are nocisensors playing important role to signal pain. Two "melastatin" TRP receptors, like TRPM8 and TRPM3 are also expressed in a subgroup of primary sensory neurons. These channels serve as thermosensors with unique thermal sensitivity ranges and are activated also by several exogenous and endogenous chemical ligands inducing conformational changes from various allosteric ("multisteric") sites. We analysed the role of plasma membrane microdomains of lipid rafts on isolated trigeminal (TRG) neurons and TRPV1-expressing CHO cell line by measuring agonist-induced Ca2+ transients with ratiometric technique. Stimulation-evoked calcitonin gene related peptide (CGRP) release from sensory nerve endings of the isolated rat trachea by radioimmunoassay was also measured. Lipid rafts were disrupted by cleaving sphingomyelin (SM) with sphingomyelinase (SMase), cholesterol depletion with methyl β-cyclodextrin (MCD) and ganglioside breakdown with myriocin. It has been revealed that intracellular Ca2+ increase responses evoked by the TRPV1 agonist capsaicin, the TRPA1 agonsits allyl isothiocyanate (AITC) and formaldehyde as well as the TRPM8 activator icilin were inhibited after SMase, MCD and myriocin incubation but the response to the TRPM3 agonist pregnenolon sulphate was not altered. Extracellular SMase treatment did not influence the thapsigargin-evoked Ca2+-release from intracellular stores. Besides the cell bodies, SMase also inhibited capsaicin- or AITC-evoked CGRP release from peripheral sensory nerve terminals, this provides the first evidence for the importance of lipid raft integrity in TRPV1 and TRPA1 gating on capsaicin-sensitive nerve terminals. SM metabolites, ceramide and sphingosine, did not influence TRPA1 and TRPV1 activation on TRG neurons, TRPV1-expressing CHO cell line, and nerve terminals. We suggest, that the hydrophobic interactions between TRP receptors and membrane lipid raft interfaces modulate the opening properties of these channels and therefore, targeting this interaction might be a promising tool for drug developmental purposes.

摘要

瞬时受体电位(TRP)阳离子通道,如TRP香草酸受体1和TRP锚蛋白重复结构域1(TRPV1和TRPA1)是伤害感受器,在疼痛信号传导中起重要作用。两种“褪黑素”TRP受体,如TRPM8和TRPM3,也在初级感觉神经元的一个亚群中表达。这些通道作为具有独特热敏感范围的温度感受器,也被几种外源性和内源性化学配体激活,这些配体从各种变构(“多位点”)位点诱导构象变化。我们通过用比率技术测量激动剂诱导的Ca2+瞬变,分析了脂筏的质膜微区在分离的三叉神经(TRG)神经元和表达TRPV1的CHO细胞系中的作用。还通过放射免疫测定法测量了刺激诱发的降钙素基因相关肽(CGRP)从分离的大鼠气管感觉神经末梢的释放。用鞘磷脂酶(SMase)切割鞘磷脂(SM)、用甲基-β-环糊精(MCD)消耗胆固醇和用衣霉素破坏神经节苷脂来破坏脂筏。结果表明,在SMase、MCD和衣霉素孵育后,TRPV1激动剂辣椒素、TRPA1激动剂烯丙基异硫氰酸酯(AITC)和甲醛以及TRPM8激活剂冰片诱发的细胞内Ca2+增加反应受到抑制,但对TRPM3激动剂孕烯醇酮硫酸盐的反应未改变。细胞外SMase处理不影响毒胡萝卜素诱发的细胞内钙库释放。除了细胞体,SMase还抑制辣椒素或AITC诱发的外周感觉神经末梢CGRP释放,这为脂筏完整性在辣椒素敏感神经末梢上的TRPV1和TRPA1门控中的重要性提供了首个证据。SM代谢产物神经酰胺和鞘氨醇不影响TRG神经元、表达TRPV1的CHO细胞系和神经末梢上的TRPA1和TRPV1激活。我们认为,TRP受体与膜脂筏界面之间的疏水相互作用调节这些通道的开放特性,因此,针对这种相互作用可能是药物开发的一个有前景的工具。

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