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Mechanism of capsaicin receptor TRPV1-mediated toxicity in pain-sensing neurons focusing on the effects of Na(+)/Ca(2+) fluxes and the Ca(2+)-binding protein calretinin.辣椒素受体TRPV1介导伤害性感受神经元毒性的机制,重点关注Na(+)/Ca(2+)通量和Ca(2+)结合蛋白钙视网膜蛋白的作用。
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The stress protein heat shock cognate 70 (Hsc70) inhibits the Transient Receptor Potential Vanilloid type 1 (TRPV1) channel.应激蛋白热休克同源蛋白70(Hsc70)抑制瞬时受体电位香草酸亚型1(TRPV1)通道。
Mol Pain. 2016 Aug 24;12. doi: 10.1177/1744806916663945. Print 2016.
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Molecular cloning, functional characterization of the porcine transient receptor potential V1 (pTRPV1) and pharmacological comparison with endogenous pTRPV1.猪瞬时受体电位香草酸亚型1(pTRPV1)的分子克隆、功能特性及与内源性pTRPV1的药理学比较
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TRPs et al.: a molecular toolkit for thermosensory adaptations.瞬时受体电位通道等:热敏适应的分子工具包。
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Evolution of vertebrate transient receptor potential vanilloid 3 channels: opposite temperature sensitivity between mammals and western clawed frogs.脊椎动物瞬时受体电位香草素 3 通道的进化:哺乳动物和西方爪蟾之间的温度敏感性相反。
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Xenopus tropicalis: an ideal experimental animal in amphibia.非洲爪蟾:两栖类实验动物的理想选择。
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Histamine potentiates acid-induced responses mediating transient receptor potential V1 in mouse primary sensory neurons.组胺增强酸诱导的瞬时受体电位 V1 介导的小鼠原代感觉神经元的反应。
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Genome-wide transcriptional response of Silurana (Xenopus) tropicalis to infection with the deadly chytrid fungus.爪蟾(非洲爪蟾)全基因组转录组对致命粘菌真菌感染的反应。
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Evolution of thermal response properties in a cold-activated TRP channel.冷激活瞬时受体电位通道热反应特性的演变
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Novel gating and sensitizing mechanism of capsaicin receptor (TRPV1): tonic inhibitory regulation of extracellular sodium through the external protonation sites on TRPV1.辣椒素受体(TRPV1)的新型门控和敏化机制:通过TRPV1上的外部质子化位点对细胞外钠进行紧张性抑制调节。
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Transient receptor potential ion channels control thermoregulatory behaviour in reptiles.瞬时受体电位离子通道控制爬行动物的体温调节行为。
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爪蟾 TRP 通道蛋白香草素受体 1 的分子克隆和功能鉴定揭示了其在陆地脊椎动物中对热、酸和辣椒素敏感性的功能进化。

Molecular cloning and functional characterization of Xenopus tropicalis frog transient receptor potential vanilloid 1 reveal its functional evolution for heat, acid, and capsaicin sensitivities in terrestrial vertebrates.

机构信息

Department of Veterinary Pharmacology, Faculty of Agriculture, Tottori University, Tottori 680-8553, Japan.

出版信息

J Biol Chem. 2012 Jan 20;287(4):2388-97. doi: 10.1074/jbc.M111.305698. Epub 2011 Nov 30.

DOI:10.1074/jbc.M111.305698
PMID:22130664
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3268400/
Abstract

The functional difference of thermosensitive transient receptor potential (TRP) channels in the evolutionary context has attracted attention, but thus far little information is available on the TRP vanilloid 1 (TRPV1) function of amphibians, which diverged earliest from terrestrial vertebrate lineages. In this study we cloned Xenopus tropicalis frog TRPV1 (xtTRPV1), and functional characterization was performed using HeLa cells heterologously expressing xtTRPV1 (xtTRPV1-HeLa) and dorsal root ganglion neurons isolated from X. tropicalis (xtDRG neurons) by measuring changes in the intracellular calcium concentration (Ca(2+)). The channel activity was also observed in xtTRPV1-expressing Xenopus oocytes. Furthermore, we tested capsaicin- and heat-induced nocifensive behaviors of the frog X. tropicalis in vivo. At the amino acid level, xtTRPV1 displays ∼60% sequence identity to other terrestrial vertebrate TRPV1 orthologues. Capsaicin induced Ca(2+) increases in xtTRPV1-HeLa and xtDRG neurons and evoked nocifensive behavior in X. tropicalis. However, its sensitivity was extremely low compared with mammalian orthologues. Low extracellular pH and heat activated xtTRPV1-HeLa and xtDRG neurons. Heat also evoked nocifensive behavior. In oocytes expressing xtTRPV1, inward currents were elicited by heat and low extracellular pH. Mutagenesis analysis revealed that two amino acids (tyrosine 523 and alanine 561) were responsible for the low sensitivity to capsaicin. Taken together, our results indicate that xtTRPV1 functions as a polymodal receptor similar to its mammalian orthologues. The present study demonstrates that TRPV1 functions as a heat- and acid-sensitive channel in the ancestor of terrestrial vertebrates. Because it is possible to examine vanilloid and heat sensitivities in vitro and in vivo, X. tropicalis could be the ideal experimental lower vertebrate animal for the study of TRPV1 function.

摘要

在进化背景下,热敏瞬时受体电位 (TRP) 通道的功能差异引起了关注,但迄今为止,关于最早从陆地脊椎动物谱系分化的两栖动物 TRP 香草素 1 (TRPV1) 功能的信息很少。在这项研究中,我们克隆了非洲爪蟾 Xenopus tropicalis 青蛙 TRPV1 (xtTRPV1),并通过测量细胞内钙离子浓度 (Ca(2+)) 的变化,使用异源表达 xtTRPV1 的 HeLa 细胞 (xtTRPV1-HeLa) 和从 X. tropicalis 分离的背根神经节神经元 (xtDRG 神经元) 对其功能进行了表征。还观察了在表达 xtTRPV1 的非洲爪蟾卵母细胞中的通道活性。此外,我们在体内测试了青蛙 X. tropicalis 的辣椒素和热诱导的伤害性行为。在氨基酸水平上,xtTRPV1 与其他陆地脊椎动物 TRPV1 同源物具有约 60%的序列同一性。辣椒素诱导 xtTRPV1-HeLa 和 xtDRG 神经元 Ca(2+) 增加,并引起 X. tropicalis 的伤害性行为。然而,与哺乳动物同源物相比,其敏感性极低。低细胞外 pH 和热激活 xtTRPV1-HeLa 和 xtDRG 神经元。热也引起伤害性行为。在表达 xtTRPV1 的卵母细胞中,热和低细胞外 pH 引起内向电流。突变分析表明,两个氨基酸 (酪氨酸 523 和丙氨酸 561) 负责对辣椒素的低敏感性。总之,我们的结果表明,xtTRPV1 作为一种多模态受体发挥作用,类似于其哺乳动物同源物。本研究表明 TRPV1 在陆地脊椎动物的祖先中作为一种热和酸敏感的通道发挥作用。由于可以在体外和体内检查香草素和热敏感性,因此 X. tropicalis 可能是研究 TRPV1 功能的理想实验性低等脊椎动物动物。