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在缺乏TRPV1和TRPV3通道的小鼠中,急性热诱发的温度感觉受损但并未消除。

Acute heat-evoked temperature sensation is impaired but not abolished in mice lacking TRPV1 and TRPV3 channels.

作者信息

Marics Irène, Malapert Pascale, Reynders Ana, Gaillard Stéphane, Moqrich Aziz

机构信息

Aix-Marseille-Université, CNRS, Institut de Biologie du Développement de Marseille, UMR 7288, Marseille, France.

出版信息

PLoS One. 2014 Jun 12;9(6):e99828. doi: 10.1371/journal.pone.0099828. eCollection 2014.

Abstract

The discovery of heat-sensitive Transient Receptor Potential Vanilloid ion channels (ThermoTRPVs) greatly advanced our molecular understanding of acute and injury-evoked heat temperature sensation. ThermoTRPV channels are activated by partially overlapping temperatures ranging from warm to supra-threshold noxious heat. TRPV1 is activated by noxious heat temperature whereas TRPV3 can be activated by warm as well as noxious heat temperatures. Loss-of-function studies in single TRPV1 and TRPV3 knock-out mice have shown that heat temperature sensation is not completely abolished suggesting functional redundancies among these two channels and highlighting the need of a detailed analysis of TRPV1::TRPV3 double knock-out mice (V1V3dKO) which is hampered by the close proximity of the loci expressing the two channels. Here we describe the generation of a novel mouse model in which trpv1 and trpv3 genes have been inactivated using bacterial artificial chromosome (BAC)-based homologous recombination in embryonic stem cells. In these mice, using classical thermosensory tests such hot plate, tail flick and the thermotaxis gradient paradigms, we confirm that TRPV1 is the master channel for sensing noxious heat temperatures and identify a cooperative role of TRPV1 and TRPV3 for sensing a well-defined window of acute moderate heat temperature. Using the dynamic hot plate assay, we unravel an intriguing and unexpected pronounced escape behavior in TRPV1 knock-out mice that was attenuated in the V1V3dKO. Together, and in agreement with the temperature activation overlap between TRPV1 and TRPV3 channels, our data provide in vivo evidence of a cooperative role between skin-derived TRPV3 and primary sensory neurons-enriched TRPV1 in modulation of moderate and noxious heat temperature sensation and suggest that other mechanisms are required for heat temperature sensation.

摘要

热敏性瞬时受体电位香草酸离子通道(热TRPVs)的发现极大地推动了我们对急性和损伤诱发热温度感觉的分子理解。热TRPV通道由从温暖到超阈值有害热的部分重叠温度激活。TRPV1由有害热温度激活,而TRPV3可由温暖以及有害热温度激活。对单个TRPV1和TRPV3基因敲除小鼠的功能缺失研究表明,热温度感觉并未完全消除,这表明这两个通道之间存在功能冗余,并突出了对TRPV1::TRPV3双基因敲除小鼠(V1V3dKO)进行详细分析的必要性,而这受到表达这两个通道的基因座紧密相邻的阻碍。在此,我们描述了一种新型小鼠模型的构建,其中利用胚胎干细胞中基于细菌人工染色体(BAC)的同源重组使trpv1和trpv3基因失活。在这些小鼠中,我们使用经典的热感觉测试,如热板法、甩尾法和热趋性梯度范式,证实TRPV1是感知有害热温度的主要通道,并确定了TRPV1和TRPV3在感知明确的急性适度热温度窗口方面的协同作用。使用动态热板试验,我们揭示了TRPV1基因敲除小鼠中一种有趣且意想不到的明显逃避行为,而这种行为在V1V3dKO小鼠中有所减弱。总之,与TRPV1和TRPV3通道之间的温度激活重叠一致,我们的数据提供了体内证据,表明皮肤来源的TRPV3和富含初级感觉神经元的TRPV1在调节适度和有害热温度感觉方面具有协同作用,并表明热温度感觉还需要其他机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4c8/4055713/6d4b9af47252/pone.0099828.g001.jpg

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