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脂质筏破坏对三叉神经感觉神经元和转染细胞系 TRPV1 受体激活的影响。

Effect of lipid raft disruption on TRPV1 receptor activation of trigeminal sensory neurons and transfected cell line.

机构信息

Department of Pharmacology and Pharmacotherapy, Faculty of Medicine, University of Pécs, Pécs, Hungary.

出版信息

Eur J Pharmacol. 2010 Feb 25;628(1-3):67-74. doi: 10.1016/j.ejphar.2009.11.052. Epub 2009 Dec 1.

Abstract

The transient receptor potential vanilloid 1 (TRPV1) is a noxious heat-sensitive, chemonociceptive cation channel which is expressed in primary sensory neurons of polymodal nociceptors. The present study is devoted to analyse the role of lipid raft constituents in calcium influx evoked by various TRPV1 agonists on sensory neurons and on rTRPV1-transfected CHO cell line. Depletion of cholesterol by methyl beta-cyclodextrin (MCD, 1-10mM) diminished the percent of the calcium uptake response of cultured trigeminal neurons to capsaicin (100nM) or resiniferatoxin (RTX, 3nM). In contrast, in TRPV1-transfected cells the inhibition was observed only when capsaicin or N-oleoyldopamine (OLDA, 10microM) was applied, but not when RTX, anandamide (AEA, 10microM) or pH 5.5 was used for gating. The magnitude of Ca(2+)-transients evoked by capsaicin (330nM) was also inhibited in both cell types. Treatment of rTRPV1-expressing cells with sphinomyelinase inhibited the capsaicin-evoked (45)Ca-uptake leaving the RTX-induced response unchanged. On the other hand, in trigeminal neurons the effect of both compounds was inhibited by sphingomyelinase treatment. Inhibition of ganglioside biosynthesis by d-threo-1-Phenyl-2-decanoylamino-3-morpholino-1-propanol (D-PDMP, 10-20microM) or myriocyn (5-50nM) diminished similarly capsaicin- or RTX-evoked calcium uptake in both cultured trigeminal neurons and rTRPV1-expressing cells. The present study revealed that depletion of different constituents of lipid raft inhibited gating the TRPV1 cation channel by various vanilloid and non-vanilloid agents. Evidence for a supporting role of cholesterol, sphingomyelin and gangliosides were obtained both in native and TRPV1-transfected cells. Differential modulation of responses to capsaicin and RTX was often observed.

摘要

瞬时受体电位香草酸 1 型(TRPV1)是一种有害的热敏、化学感觉阳离子通道,存在于多模式伤害感受器的初级感觉神经元中。本研究旨在分析脂质筏成分在各种 TRPV1 激动剂诱导的感觉神经元和 rTRPV1 转染 CHO 细胞系钙离子内流中的作用。用甲基-β-环糊精(MCD,1-10mM)耗尽胆固醇,可降低培养的三叉神经神经元对辣椒素(100nM)或树脂毒素(RTX,3nM)的钙摄取反应的百分比。相比之下,在 TRPV1 转染的细胞中,只有在应用辣椒素或 N-油酰多巴胺(OLDA,10μM)时才观察到抑制,而在应用 RTX、花生四烯酸(AEA,10μM)或 pH5.5 时则没有。辣椒素(330nM)诱导的 Ca2+瞬变幅度也在两种细胞类型中受到抑制。用鞘磷脂酶处理 rTRPV1 表达细胞,抑制了辣椒素诱导的(45)Ca 摄取,而 RTX 诱导的反应则不变。另一方面,在三叉神经神经元中,两种化合物的作用都被鞘磷脂酶处理所抑制。用 d-threo-1-苯-2-癸酰氨基-3-吗啉-1-丙醇(D-PDMP,10-20μM)或 myriocyn(5-50nM)抑制神经节苷脂生物合成,也可类似地抑制培养的三叉神经神经元和 rTRPV1 表达细胞中辣椒素或 RTX 诱导的钙摄取。本研究表明,不同脂质筏成分的耗竭抑制了各种香草素和非香草素激动剂对 TRPV1 阳离子通道的门控作用。在天然和 TRPV1 转染细胞中都获得了胆固醇、鞘磷脂和神经节苷脂的支持作用的证据。对辣椒素和 RTX 的反应的差异调节经常被观察到。

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