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Heteromeric Heat-sensitive Transient Receptor Potential Channels Exhibit Distinct Temperature and Chemical Response

机译:异构热敏感瞬态受体潜在通道表现出不同的温度和化学响应

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摘要

TRPV1 and TRPV3 are two heat-sensitive ion channels activated at distinct temperature ranges perceived by human as hot and warm, respectively. Compounds eliciting human sensations of heat or warmth can also potently activate these channels. In rodents, TRPV3 is expressed predominantly in skin keratinocytes, whereas in humans TRPV1 and TRPV3 are co-expressed in sensory neurons of dorsal root ganglia and trigeminal ganglion and are known to form heteromeric channels with distinct single channel conductances as well as sensitivities to TRPV1 activator capsaicin and inhibitor capsazepine. However, how heteromeric TRPV1/TRPV3 channels respond to heat and other stimuli remains unknown. In this study, we examined the behavior of heteromeric TRPV1/TRPV3 channels activated by heat, capsaicin, and voltage. Our results demonstrate that the heteromeric channels exhibit distinct temperature sensitivity, activation threshold, and heat-induced sensitization. Changes in gating properties apparently originate from interactions between TRPV1 and TRPV3 subunits. Our results suggest that heteromeric TRPV1/TRPV3 channels are unique heat sensors that may contribute to the fine-tuning of sensitivity to sensory inputs.
机译:TRPV1和TRPV3是两个热敏离子通道,分别在人类感知为热和热的不同温度范围内激活。引起人的热量或温暖感的化合物也可以有效地激活这些通道。在啮齿类动物中,TRPV3主要在皮肤角质形成细胞中表达,而在人类中,TRPV1和TRPV3在背根神经节和三叉神经节的感觉神经元中共表达,并且已知形成具有不同单通道电导率以及对TRPV1激活剂敏感的异聚通道。辣椒素和辣椒碱抑制剂。然而,尚不清楚异聚体TRPV1 / TRPV3通道如何响应热和其他刺激。在这项研究中,我们检查了由热,辣椒素和电压激活的异质TRPV1 / TRPV3通道的行为。我们的结果表明,异聚体通道表现出不同的温度敏感性,激活阈值和热致敏化。门控特性的变化显然源自TRPV1和TRPV3亚基之间的相互作用。我们的结果表明,异聚体TRPV1 / TRPV3通道是独特的热传感器,可能有助于对感官输入的灵敏度进行微调。

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