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镍离子对瞬时受体电位 V1 的直接激活作用。

Direct activation of transient receptor potential V1 by nickel ions.

机构信息

Lehrstuhl für Zellphysiologie, Ruhr-Universität Bochum, Universitätsstr. 150, 44780 Bochum, Germany.

出版信息

Pflugers Arch. 2010 Apr;459(5):737-50. doi: 10.1007/s00424-009-0782-8. Epub 2010 Jan 26.

Abstract

TRPV1 is a member of the transient receptor potential (TRP) family of cation channels. It is expressed in sensory neurons of the dorsal root and trigeminal ganglia as well as in a wide range of non-neuronal tissues. The channel proteins serve as polymodal receptors for various potentially harmful stimuli to prevent tissue damage by mediating unpleasant or painful sensations. Using Ca imaging and voltage-clamp recordings, we found that low millimolar doses of Ni2+ (NiSO4) are able to induce non-specific cation currents in a capsaicin-sensitive population of cultured mouse trigeminal ganglion neurons. In addition, we show that NiSO4 elicits intracellular Ca2+ transients and membrane currents in HEK293 and CHO cells heterologously expressing rat TRPV1. The use of voltage ramps from -100 to +100 mV revealed a strong outward rectification of these currents. Application of NiSO4 to the cytoplasmic face of inside-out membrane patches did not induce any currents. However, delivering NiSO4 to the extracellular face during outside-out recordings, we observed a significant increase in open probability paralleled by a decrease in channel conductance. When combined with other TRPV1 agonists, NiSO4 produces a bimodal effect on TRPV1 activity, depending on the strength and concentration of the second stimulus. Outwardly directed currents induced by low doses of capsaicin and nearly neutral pH values ( approximately pH = 7.0-6.5) were augmented by low doses of NiSO4. In contrast, responses to stronger stimuli were reduced by NiSO4. Moreover, we were able to identify amino acids involved in the effect of NiSO4 on TRPV1.

摘要

TRPV1 是瞬时受体电位 (TRP) 家族阳离子通道的成员。它在背根神经节和三叉神经节的感觉神经元中以及在广泛的非神经元组织中表达。通道蛋白作为多种潜在有害刺激的多模式受体,通过介导不愉快或疼痛感觉来防止组织损伤。使用 Ca 成像和电压钳记录,我们发现低毫摩尔剂量的 Ni2+(NiSO4)能够在培养的小鼠三叉神经节神经元的辣椒素敏感群体中诱导非特异性阳离子电流。此外,我们表明 NiSO4 在异源表达大鼠 TRPV1 的 HEK293 和 CHO 细胞中引发细胞内 Ca2+瞬变和膜电流。从 -100 到 +100 mV 的电压斜坡的使用揭示了这些电流的强烈外向整流。将 NiSO4 应用于内面向外膜片的细胞质侧不会诱导任何电流。然而,在向外记录期间将 NiSO4 递送到细胞外表面,我们观察到开放概率显著增加,同时通道电导降低。当与其他 TRPV1 激动剂结合使用时,NiSO4 对 TRPV1 活性产生双峰效应,这取决于第二个刺激的强度和浓度。低剂量辣椒素和近中性 pH 值(约 pH = 7.0-6.5)诱导的外向电流被低剂量 NiSO4 增强。相比之下,NiSO4 降低了对更强刺激的反应。此外,我们能够确定涉及 NiSO4 对 TRPV1 作用的氨基酸。

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