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Ca2+/Calmodulin Modulates TRPV1 Activation by Capsaicin

机译:Ca2 + /钙调蛋白调节辣椒素对TRPV1的激活

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摘要

TRPV1 ion channels mediate the response to painful heat, extracellular acidosis, and capsaicin, the pungent extract from plants in the Capsicum family (hot chili peppers) (Szallasi, A., and P.M. Blumberg. 1999. Pharmacol. Rev. 51:159–212; Caterina, M.J., and D. Julius. 2001. Annu. Rev. Neurosci. 24:487–517). The convergence of these stimuli on TRPV1 channels expressed in peripheral sensory nerves underlies the common perceptual experience of pain due to hot temperatures, tissue damage and exposure to capsaicin. TRPV1 channels are nonselective cation channels (Caterina, M.J., M.A. Schumacher, M. Tominaga, T.A. Rosen, J.D. Levine, and D. Julius. 1997. Nature. 389:816–824). When activated, they produce depolarization through the influx of Na+, but their high Ca2+ permeability is also important for mediating the response to pain. In particular, Ca2+ influx is thought to be required for the desensitization to painful sensations over time (Cholewinski, A., G.M. Burgess, and S. Bevan. 1993. Neuroscience. 55:1015–1023; Koplas, P.A., R.L. Rosenberg, and G.S. Oxford. 1997. J. Neurosci. 17:3525–3537). Here we show that in inside-out excised patches from TRPV1 expressed in Xenopus oocytes and HEK 293 cells, Ca2+/calmodulin decreased the capsaicin-activated current. This inhibition was not mimicked by Mg2+, reflected a decrease in open probability, and was slowly reversible. Furthermore, increasing the calmodulin concentration in our patches by coexpression of wild-type calmodulin with TRPV1 produced inhibition by Ca2+ alone. In contrast, patches excised from cells coexpressing TRPV1 with a mutant calmodulin did not respond to Ca2+. Using an in vitro calmodulin-binding assay, we found that TRPV1 in oocyte lysates bound calmodulin, although in a Ca2+-independent manner. Experiments with GST-fusion proteins corresponding to regions of the channel NH2-terminal domain demonstrated that a stretch of ∼30 amino acids adjacent to the first ankyrin repeat bound calmodulin in a Ca2+-dependent manner. The physiological response to pain involves an influx of Ca2+ through TRPV1. Our results indicate that this Ca2+ influx may feed back on the channels, inhibiting their gating. This type of feedback inhibition could play a role in the desensitization produced by capsaicin.
机译:TRPV1离子通道介导了对疼痛热,细胞外酸中毒和辣椒素的反应,辣椒素是辣椒家族植物(辣椒)的辛辣提取物(Szallasi,A.和PM Blumberg。1999. Pharmacol。Rev. 51:159– 212; Caterina,MJ和D.Julius。2001. Annu。Rev. Neurosci。24:487-517)。这些刺激在周围感觉神经中表达的TRPV1通道上的收敛,是由于高温,组织损伤和暴露于辣椒素引起的疼痛的常见感知经验的基础。 TRPV1通道是非选择性阳离子通道(Caterina,M.J.,M.A。Schumacher,M.Tominaga,T.A。Rosen,J.D。Levine和D.Julius。1997. Nature。389:816–824)。激活后,它们会通过Na + 的流入而产生去极化作用,但是其高Ca 2 + 渗透性对于介导对疼痛的反应也很重要。特别是,Ca 2 + 入流被认为是随着时间的流逝对疼痛感脱敏所必需的(Cholewinski,A.,GM Burgess,and S. Bevan。1993. Neuroscience。55:1015-1023 ; Koplas,PA,RL Rosenberg和GS Oxford。1997. J. Neurosci。17:3525-3537)。在这里,我们显示在爪蟾卵母细胞和HEK 293细胞中从TRPV1内向外切除的补丁中,Ca 2 + /钙调蛋白降低了辣椒素激活电流。 Mg 2 + 不能模仿这种抑制作用,反映了打开可能性的降低,并且是缓慢可逆的。此外,通过野生型钙调蛋白与TRPV1的共表达来增加我们斑块中钙调蛋白的浓度,会产生单独的Ca 2 + 抑制作用。相反,从共表达TRPV1的细胞与突变的钙调蛋白中切除的贴片对Ca 2 + 没有反应。通过体外钙调蛋白结合试验,我们发现卵母细胞中的TRPV1裂解了钙调蛋白,尽管其以Ca 2 + 的方式独立。 GST融合蛋白与通道NH2末端结构域的区域相对应的实验表明,与第一个锚蛋白相邻的约30个氨基酸段以Ca 2 + 依赖的方式与钙调蛋白结合。对疼痛的生理反应涉及通过TRPV1流入Ca 2 + 。我们的结果表明,这种Ca 2 + 流入可能会在通道上反馈,从而抑制其选通。这种反馈抑制作用可能在辣椒素产生的脱敏中起作用。

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