Molecular Mechanisms of TRPV1 Channel Activation

Q3 Medicine
A. Jara-Oseguera, Andres Nieto-posadas, A. Szallasi, L. Islas, T. Rosenbaum
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引用次数: 23

Abstract

Transient Receptor Potential (TRP) cation channels participate in various fundamental processes in cell- and organism-physiology in unicellular eukaryotes, invertebrates and vertebrates. Interestingly, many TRP channels function as detectors of sensory stimuli. The TRPV1 (vanilloid 1) channel serves as an integrator of noxious chemical and physical stimuli known to cause irritation and pain, such as elevated temperatures, acids, and irritant chemical compounds, and its activation has been linked to acute nociceptive pain and neurogenic inflammation. The mechanisms by which the channel detects incoming stimuli, how the sensing domains are coupled to channel gating and how these processes are connected to specific structural regions in the channel are not fully understood, but valuable information is available. Many sites in- volved in agonist detection have been characterized and gating models that describe many features of the channel's behav- ior have been put forward. Structural and functional information indicates TRP channels are similar to voltage-activated potassium channels, with a tetrameric organization and six-transmembrane-region subunits, a pore domain with multi-ion binding properties and an intracellular S6 gate that seems to be the point of convergence of the many activation modalities leading to the opening of the ion conduction pathway. Furthermore, TRPV1 expression is altered in various disease states and TRPV1 gene polymorphism was speculated to play a role in pain sensation. The complex activation and regulation of TRPV1 may have important implications for drug development.
TRPV1通道激活的分子机制
在单细胞真核生物、无脊椎动物和脊椎动物中,瞬时受体电位(TRP)阳离子通道参与细胞和生物体生理的各种基本过程。有趣的是,许多TRP通道充当感觉刺激的检测器。TRPV1(香草蛋白1)通道是已知引起刺激和疼痛的有害化学和物理刺激的整合器,如高温、酸和刺激性化合物,其激活与急性伤害性疼痛和神经源性炎症有关。通道检测传入刺激的机制,感应域如何与通道门控耦合以及这些过程如何与通道中的特定结构区域连接尚不完全清楚,但有价值的信息是可用的。许多参与激动剂检测的位点已经被表征,描述通道行为的许多特征的门控模型已经被提出。结构和功能信息表明,TRP通道类似于电压激活的钾通道,具有四聚体组织和六个跨膜区域亚基,具有多离子结合特性的孔结构域和细胞内S6门,该门似乎是许多激活方式的交汇点,导致离子传导途径的打开。此外,TRPV1的表达在各种疾病状态下发生改变,推测TRPV1基因多态性在疼痛感觉中起作用。TRPV1的复杂激活和调控可能对药物开发具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Open Pain Journal
Open Pain Journal Medicine-Anesthesiology and Pain Medicine
CiteScore
0.80
自引率
0.00%
发文量
9
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