Jung J, Hwang S W, Kwak J, Lee S Y, Kang C J, Kim W B, Kim D, Oh U
The Sensory Research Group, Creative Research Initiatives, Seoul National University, College of Pharmacy, Kwanak, Seoul 151-742, Korea.
J Neurosci. 1999 Jan 15;19(2):529-38. doi: 10.1523/JNEUROSCI.19-02-00529.1999.
Capsaicin (CAP) excites small sensory neurons, causing pain, neurogenic inflammation, and other visceral reflexes. These effects have been proposed to be the result of CAP activation of a nonselective cation current. It is generally assumed that CAP binds to an extracellular domain of the membrane receptor. However, the exact binding site is not known because of the lipophilic nature of CAP. To determine whether the binding domain is extracellular or intracellular, we tested the effect of a synthetic water-soluble CAP analog, DA-5018.HCl, on current activation. CAP activated the 45 pS (at -60 mV) nonselective cation channel from either side of the membrane. However, DA-5018.HCl, which had a greater potency and efficacy than CAP, activated the channels only from the cytosolic side of the patch membrane in a capsazepine, a CAP receptor antagonist, reversible manner. When applied extracellularly, DA-5018. HCl did not, but CAP did, activate whole-cell currents in sensory neurons, as well as in oocytes expressing vanilloid receptor 1, a recently cloned CAP receptor. Hydrogen ions, reported as a possible endogenous activator of cation current, failed to elicit any current when acidic medium (pH 5.0-6.0) was applied intracellularly, indicating that H+ does not mediate the CAP effect. These results indicate that CAP and its analog bind to the cytosolic domain of the CAP receptor and suggest that an endogenous CAP-like substance other than H+ may be present in the cell.
辣椒素(CAP)可刺激感觉小神经元,引发疼痛、神经源性炎症及其他内脏反射。这些效应被认为是CAP激活非选择性阳离子电流的结果。一般认为,CAP与膜受体的胞外结构域结合。然而,由于CAP具有亲脂性,其确切的结合位点尚不清楚。为了确定结合结构域是在细胞外还是细胞内,我们测试了合成的水溶性CAP类似物DA-5018.HCl对电流激活的影响。CAP可从膜的两侧激活45 pS(在-60 mV时)的非选择性阳离子通道。然而,效力和效能均高于CAP的DA-5018.HCl仅以辣椒素受体拮抗剂辣椒平可逆的方式从膜片的胞质侧激活通道。当细胞外施加时,DA-5018.HCl不能激活感觉神经元以及表达香草酸受体1(最近克隆的一种CAP受体)的卵母细胞中的全细胞电流,但CAP可以。据报道可能作为阳离子电流内源性激活剂的氢离子,在细胞内施加酸性介质(pH 5.0 - 6.0)时未能引发任何电流,这表明H⁺不介导CAP效应。这些结果表明,CAP及其类似物与CAP受体的胞质结构域结合,并提示细胞中可能存在除H⁺之外的内源性类CAP物质。