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钠通道亚型、嵌合体以及与β1亚基共表达的通道的状态依赖性可卡因阻断作用

State-dependent cocaine block of sodium channel isoforms, chimeras, and channels coexpressed with the beta1 subunit.

作者信息

Wright S N, Wang S Y, Xiao Y F, Wang G K

机构信息

Department of Anesthesia Research Laboratories, Harvard Medical School, Brigham and Women's Hospital, Boston, Massachusetts 02115,

出版信息

Biophys J. 1999 Jan;76(1 Pt 1):233-45. doi: 10.1016/S0006-3495(99)77192-4.

Abstract

Cocaine block of human cardiac (hH1) and rat skeletal (mu1) muscle sodium channels was examined under whole-cell voltage clamp in transiently transfected HEK293t cells. Low affinity block of resting mu1 and hH1 channels at -180 mV was the same, and high affinity block of inactivated channels at -70 mV was the same. Cocaine block of hH1 channels was greater than block of mu1 channels at voltages between -120 mV and -90 mV, suggesting that greater steady-state inactivation of hH1 channels in this voltage range makes them more susceptible to cocaine block. We induced shifts in the voltage dependence of steady-state inactivation at mu1 and hH1 channels by constructing mu1/hH1 channel chimeras or by coexpressing the wild-type channels with the rat brain beta1 subunit. In contrast to several previous reports, coexpression of the rat brain beta1 subunit with mu1 or hH1 produced large positive shifts in steady-state inactivation. Shifts in the voltage dependence of steady-state inactivation elicited linear shifts in steady-state cocaine block, yet these manipulations did not affect the cocaine affinity of resting or inactivated channels. These data, as well as simulations used to predict block, indicate that state-dependent cocaine block depends on both steady-state inactivation and channel activation, although inactivation appears to have the predominant role.

摘要

在瞬时转染的HEK293t细胞中,利用全细胞膜片钳技术研究了可卡因对人心脏(hH1)和大鼠骨骼肌(mu1)肌肉钠通道的阻断作用。在-180 mV时,静息mu1和hH1通道的低亲和力阻断作用相同,在-70 mV时,失活通道的高亲和力阻断作用相同。在-120 mV至-90 mV之间的电压下,可卡因对hH1通道的阻断作用大于对mu1通道的阻断作用,这表明在此电压范围内hH1通道更高的稳态失活使其更容易受到可卡因的阻断。我们通过构建mu1/hH1通道嵌合体或通过将野生型通道与大鼠脑β1亚基共表达,诱导了mu1和hH1通道稳态失活电压依赖性的改变。与之前的几份报告相反,大鼠脑β1亚基与mu1或hH1共表达会使稳态失活产生较大的正向偏移。稳态失活电压依赖性的改变引起了稳态可卡因阻断的线性改变,但这些操作并不影响静息或失活通道的可卡因亲和力。这些数据以及用于预测阻断作用的模拟结果表明,状态依赖性可卡因阻断取决于稳态失活和通道激活,尽管失活似乎起主要作用。

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