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Ethyl Vanillin Activates TRPA1

机译:乙基香草蛋白激活TRPA1

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The nonselective cation channel transient receptor potential ankryn subtype family 1 (TRPA1) is expressed in neurons of dorsal root ganglia and trigeminal ganglia and also in vagal afferent neurons that innervate the lungs and gastrointestinal tract. Many TRPA1 agonists are reactive electrophilic compounds that form covalent adducts with TRPA1. Allyl isothiocyanate (AITC), the common agonist used to identify TRPA1, contains an electrophilic group that covalently binds with cysteine residues of TRPA1 and confers a structural change on the channel. There is scientific motivation to identify additional compounds that can activate TRPA1 with different mechanisms of channel gating. We provide evidence that ethyl vanillin (EVA) is a TRPA1 agonist. Using fluorescent calcium imaging and whole-cell patch-clamp electrophysiology on dissociated rat vagal afferent neurons and TRPA1-transfected COS-7 cells, we discovered that EVA activates cells also activated by AITC. Both agonists display similar current profiles and conductances. Pretreatment with A967079, a selective TRPA1 antagonist, blocks the EVA response as well as the AITC response. Furthermore, EVA does not activate vagal afferent neurons from TRPA1 knockout mice, showing selectivity for TRPA1 in this tissue. Interestingly, EVA appears to be pharmacologically different from AITC as a TRPA1 agonist. When AITC is applied before EVA, the EVA response is occluded. However, they both require intracellular oxidation to activate TRPA1. These findings suggest that EVA activates TRPA1 but via a distinct mechanism that may provide greater ease for study in native systems compared with AITC and may shed light on differential modes of TRPA1 gating by ligand types.
机译:非选择性阳离子通道瞬态受体潜在的Ankryn亚型家庭1(TRPA1)在背根神经节和三叉肠神经节的神经元中表达,并且还在缩进的传入神经元中,使肺部和胃肠道。许多TRPA1激动剂是用TRPA1形成共价加合物的反应性亲电子化合物。烯丙基异硫氰酸酯(AITC),用于鉴定TRPA1的常见激动剂含有一种亲电子基团,其与TRPA1的半胱氨酸残基共价结合,并赋予通道上的结构变化。有科学的动机来识别可以用不同的通道门控机制激活TRPA1的额外化合物。我们提供证据表明乙基香草素(EVA)是TRPA1激动剂。在解离大鼠缩小传入神经元和TRPA1转染的COS-7细胞上使用荧光钙成像和全细胞贴片电生理学,我们发现EVA激活IATC也激活细胞。两个激动剂都显示出类似的电流配置文件和电导。使用A967079的预处理是一种选择性TRPA1拮抗剂,阻止EVA响应以及AITC响应。此外,EVA不激活来自TRPA1敲除小鼠的缩小传入神经元,显示该组织中TRPA1的选择性。有趣的是,EVA似乎与AITC的药理学差异,作为TRPA1激动剂。当AITC在EVA之前应用时,EVA响应被遮挡。然而,它们都需要细胞内氧化来激活TRPA1。这些发现表明EVA激活TRPA1,而是通过不同的机制,与AITC相比,可以在天然系统中进行更大的研究,并且可以通过配体类型的TRPA1浇注的差分模式脱光。

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