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Selective Activation of hTRPV1 by N-Geranyl Cyclopropylcarboxamide, an Amiloride-Insensitive Salt Taste Enhancer

机译:N-Geranyl环丙基羧酰胺(对阿米洛利不敏感的盐味增强剂)对hTRPV1的选择性激活

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摘要

TRPV1t, a variant of the transient receptor potential vanilloid-1 (TRPV1) has been proposed as a constitutively active, non-selective cation channel as a putative amiloride-insensitive salt taste receptor and shares many properties with TRPV1. Based on our previous chorda tympani taste nerve recordings in rodents and human sensory evaluations, we proposed that N-geranylcyclopropylcarboxamide (NGCC), a novel synthetic compound, acts as a salt taste enhancer by modulating the amiloride/benzamil-insensitive Na+ entry pathways. As an extension of this work, we investigated NGCC-induced human TRPV1 (hTRPV1) activation using a Ca2+-flux signaling assay in cultured cells. NGCC enhanced Ca2+ influx in hTRPV1-expressing cells in a dose-dependent manner (EC50 = 115 µM). NGCC-induced Ca2+ influx was significantly attenuated by ruthenium red (RR; 30 µM), a non-specific blocker of TRP channels and capsazepine (CZP; 5 µM), a specific antagonist of TRPV1, implying that NGCC directly activates hTRPV1. TRPA1 is often co-expressed with TRPV1 in sensory neurons. Therefore, we also investigated the effects of NGCC on hTRPA1-expressing cells. Similar to hTRPV1, NGCC enhanced Ca2+ influx in hTRPA1-expressing cells (EC50 = 83.65 µM). The NGCC-induced Ca2+ influx in hTRPA1-expressing cells was blocked by RR (30 µM) and HC-030031 (100 µM), a specific antagonist of TRPA1. These results suggested that NGCC selectively activates TRPV1 and TRPA1 in cultured cells. These data may provide additional support for our previous hypothesis that NGCC interacts with TRPV1 variant cation channel, a putative amiloride/benzamil-insensitive salt taste pathway in the anterior taste receptive field.
机译:TRPV1t是瞬时受体电位香草酸-1(TRPV1)的变体,已被提议作为构成活性的非选择性阳离子通道,作为推定的对阿米洛利不敏感的盐味受体,并且与TRPV1具有许多特性。基于我们以前在啮齿动物中的鼓膜鼓膜味神经记录和人体感官评估,我们提出了一种新型合成化合物N-香叶基环丙基羧酰胺(NGCC)通过调节阿米洛利/苯甲酰咪唑不敏感的Na +进入途径来充当盐味增强剂。作为这项工作的扩展,我们在培养的细胞中使用Ca2 +-通量信号测定法研究了NGCC诱导的人TRPV1(hTRPV1)激活。 NGCC以剂量依赖性方式增强了表达hTRPV1的细胞中Ca2 +的流入(EC50 = 115 µM)。 NGCC诱导的Ca2 +内流被非特异性的TRP通道阻滞剂钌红(RR; 30 µM)和TRPV1的特异性拮抗剂Capsazepine(CZP; 5 µM)显着减弱,这表明NGCC直接激活了hTRPV1。 TRPA1通常与TRPV1在感觉神经元中共表达。因此,我们还研究了NGCC对hTRPA1表达细胞的影响。类似于hTRPV1,NGCC增强了表达hTRPA1的细胞中的Ca2 +流入(EC50 = 83.65 µM)。 NGCC诱导的hTRPA1表达细胞中Ca2 +内流被RR(30 µM)和HC-030031(100 µM)(TRPA1的特异性拮抗剂)阻断。这些结果表明,NGCC在培养的细胞中选择性激活TRPV1和TRPA1。这些数据可能为我们先前的假设提供新的支持,即NGCC与TRPV1变异阳离子通道相互作用,该通道是前味觉接收领域中假定的阿米洛利/苯并米尔不敏感的盐味途径。

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