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在培养的大鼠主动脉肌细胞中,存在两种具有不同电生理和药理特性的高电压激活、对二氢吡啶敏感的Ca2+通道电流。

Two high-voltage-activated, dihydropyridine-sensitive Ca2+ channel currents with distinct electrophysiological and pharmacological properties in cultured rat aortic myocytes.

作者信息

Neveu D, Nargeot J, Richard S

机构信息

Centre de Recherches de Biochimie Macromoléculaire, C.N.R.S. UPR 9008, I.N.S.E.R.M. U 249, Montpellier, France.

出版信息

Pflugers Arch. 1993 Jun;424(1):45-53. doi: 10.1007/BF00375101.

Abstract

In smooth muscle cells, essentially two distinct types of voltage-gated Ca2+ channels have been shown, on the basis of their distinct electrophysiological and pharmacological properties, to coexist. Here we report that, in addition to a dihydropyridine (DHP)-sensitive, low-voltage-activated Ba2+ current (IBa,LVA), two types of high-voltage-activated Ba2+ currents with distinct waveforms were recorded in whole-cell clamped aortic myocytes; these were referred to as IBa,HVA1 and IBa,HVA2. They were investigated in cells where no IBa,LVA was detectable. IBa,HVA1 had a slow, monoexponential decay. In contrast, the decay of IBa,HVA2 was much faster and biexponential. In addition, IBa,HVA2 had more negative ranges of activation and steady-state inactivation than IBa,HVA1 and was more sensitive to the DHP antagonist nicardipine (concentrations for half maximum inhibition 0.2 microM and 2 microM, respectively). When using the physiological ion Ca2+ as the charge carrier, the decay of HVA1 currents was not altered, whereas both time constants of HVA2 current decay were accelerated five-fold. Moreover, permeability ratios (ICa/IBa) were also significantly different (0.2 and 0.6 for HVA1 and HVA2 respectively). IBa,HVA1 and IBa,HVA2 are consistent either with the existence and activation of two functionally distinct subtypes of the so-called "DHP-sensitive L-type" Ca2+ channel or with different gating behaviours of a single type of channel. Potentially, they may serve distinct biological functions and constitute distinct targets for neurotransmitters and drugs.

摘要

在平滑肌细胞中,基于其不同的电生理和药理学特性,已显示出本质上两种不同类型的电压门控Ca2+通道共存。在此我们报告,除了对二氢吡啶(DHP)敏感的低电压激活Ba2+电流(IBa,LVA)外,在全细胞钳制的主动脉肌细胞中记录到了两种具有不同波形的高电压激活Ba2+电流;这些电流被称为IBa,HVA1和IBa,HVA2。它们是在检测不到IBa,LVA的细胞中进行研究的。IBa,HVA1具有缓慢的单指数衰减。相比之下,IBa,HVA2的衰减要快得多且是双指数的。此外,与IBa,HVA1相比,IBa,HVA2的激活和稳态失活范围更负,并且对DHP拮抗剂尼卡地平更敏感(半数最大抑制浓度分别为0.2 microM和2 microM)。当使用生理离子Ca2+作为电荷载体时,HVA1电流的衰减没有改变,而HVA2电流衰减的两个时间常数都加快了五倍。此外,通透率(ICa/IBa)也有显著差异(HVA1和HVA2分别为0.2和0.6)。IBa,HVA1和IBa,HVA2要么与所谓“DHP敏感L型”Ca2+通道的两种功能不同亚型的存在和激活一致,要么与单一类型通道的不同门控行为一致。它们可能具有不同的生物学功能,并构成神经递质和药物的不同靶点。

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