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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Identification of voltage-gated K+ channel beta 2 (Kvβ2) subunit as a novel interaction partner of the pain transducer Transient Receptor Potential Vanilloid 1 channel (TRPV1)
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Identification of voltage-gated K+ channel beta 2 (Kvβ2) subunit as a novel interaction partner of the pain transducer Transient Receptor Potential Vanilloid 1 channel (TRPV1)

机译:鉴定电压门控性K +通道β2(Kvβ2)亚基作为疼痛传感器的新型相互作用伴侣瞬时受体电位香草酸1通道(TRPV1)

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摘要

The Transient Receptor Potential Vanilloid 1 (TRPV1, vanilloid receptor 1) ion channel plays a key role in the perception of thermal and inflammatory pain, however, its molecular environment in dorsal root ganglia (DRG) is largely unexplored. Utilizing a panel of sequence-directed antibodies against TRPV1 protein and mouse DRG membranes, the channel complex from mouse DRG was detergent-solubilized, isolated by immunoprecipitation and subsequently analyzed by mass spectrometry. A number of potential TRPV1 interaction partners were identified, among them cytoskeletal proteins, signal transduction molecules, and established ion channel subunits. Based on stringent specificity criteria, the voltage-gated K+ channel beta 2 subunit (Kvβ2), an accessory subunit of voltage-gated K+ channels, was identified of being associated with native TRPV1 channels. Reverse co-immunoprecipitation and antibody co-staining experiments confirmed TRPV1/Kvβ2 association. Biotinylation assays in the presence of Kvβ2 demonstrated increased cell surface expression levels of TRPV1, while patch-clamp experiments resulted in a significant increase of TRPV1 sensitivity to capsaicin. Our work shows, for the first time, the association of a Kvβ subunit with TRPV1 channels, and suggests that such interaction may play a role in TRPV1 channel trafficking to the plasma membrane.
机译:瞬态受体潜在的香草酸1(TRPV1,香草酸受体1)离子通道在感知热痛和炎性疼痛中起关键作用,但是,其在背根神经节(DRG)中的分子环境尚未被开发。利用针对TRPV1蛋白和小鼠DRG膜的一组序列定向抗体,对来自小鼠DRG的通道复合物进行去污剂溶解,通过免疫沉淀分离,然后通过质谱分析。确定了许多潜在的TRPV1相互作用伙伴,其中包括细胞骨架蛋白,信号转导分子和已建立的离子通道亚基。基于严格的特异性标准,电压门控K +通道beta 2亚基(Kvβ2)是电压门控K +通道的辅助亚基,被确定与天然TRPV1通道相关。反向共免疫沉淀和抗体共染色实验证实了TRPV1 /Kvβ2的关联。在存在Kvβ2的情况下进行的生物素化分析表明,TRPV1的细胞表面表达水平提高,而膜片钳实验导致TRPV1对辣椒素的敏感性显着提高。我们的工作首次显示了Kvβ亚基与TRPV1通道的关联,并表明这种相互作用可能在TRPV1通道向质膜的运输中起作用。

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