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兔窦房结细胞中由毒蕈碱型钾通道自发开放引起的背景电导。

Background conductance attributable to spontaneous opening of muscarinic K+ channels in rabbit sino-atrial node cells.

作者信息

Ito H, Ono K, Noma A

机构信息

Department of Physiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

J Physiol. 1994 Apr 1;476(1):55-68.

Abstract

Single myocytes were dissociated from the rabbit sino-atrial node, and the membrane background conductance produced by spontaneous opening of the muscarinic K+ channels was investigated by recording whole-cell and single channel currents in both normal K+ (5.4 mM) and high-K+ (145 mM) external solutions. Increasing external K+ concentration ([K+]o) from 5.4 to 145 mM induced a large inward shift of the whole-cell current accompanied by considerable current fluctuations at -50 mV. The high-K(+)-induced current was both K+ selective and voltage dependent, which was examined by varying [K+]o. This current was almost completely suppressed by 1-5 mM Ba2+ or 2-10 mM Cs+ and it was partly blocked by 10 microM atropine. In high-K+ (145 mM) solution, 20 nM acetylcholine (ACh) further increased the K+ conductance as well as the current noise. The power density spectrum of the noise was fitted with a sum of two Lorentzian functions. The corner frequencies of both the slow (approximately 5 Hz) and fast (approximately 120 Hz) components were comparable between the noise before and during the ACh application. Internal dialysis with a non-hydrolysable derivative of ATP, 5'-adenylylimido-diphosphate (AMP-PNP) or Mg(2+)-free solution markedly decreased both the amplitude and fluctuations of the high-K(+)-induced current. The relation between the variance of the current fluctuations and the mean current amplitude was linear in every experiment using dialysis of AMP-PNP or Mg(2+)-free internal solution, or using superfusion of ACh. The slopes of these relations gave comparable single channel current amplitudes of -0.7 pA at -50 mV. These results indicate that the spontaneous opening of the muscarinic K+ channels is largely responsible for the high-K(+)-induced current. In the high-K+ solution, the variance-mean relation at -50 mV showed that the muscarinic K+ channel provides an inward current of 3.12 +/- 2.13 pA pF-1 (n = 23), which was about 60% of the total inward background current. In the normal K+ solution, the variance-mean relation at -50 mV indicated that an outward current of 6.0 +/- 2.0 pA (0.33 +/- 0.28 pA pF-1, n = 8) was provided by the K+ channel. The single channel current amplitude was estimated to be 0.06 +/- 0.02 pA (n = 9). Cell-attached recordings in the absence of ACh demonstrated sporadic and brief openings of channels identical to the ACh-induced channels. The power density spectra of the single channel currents exhibited kinetic properties comparable with those of the whole-cell currents.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

从兔窦房结分离出单个心肌细胞,通过记录正常钾离子(5.4 mM)和高钾离子(145 mM)细胞外溶液中的全细胞电流和单通道电流,研究了毒蕈碱型钾通道自发开放产生的膜背景电导。将细胞外钾离子浓度([K⁺]ₒ)从5.4 mM增加到145 mM,在-50 mV时诱导全细胞电流大幅内向偏移,并伴有明显的电流波动。通过改变[K⁺]ₒ检测到,高钾诱导的电流具有钾离子选择性和电压依赖性。该电流几乎完全被1 - 5 mM Ba²⁺或2 - 10 mM Cs⁺抑制,部分被10 μM阿托品阻断。在高钾(145 mM)溶液中,20 nM乙酰胆碱(ACh)进一步增加了钾离子电导以及电流噪声。噪声的功率密度谱拟合为两个洛伦兹函数之和。ACh应用前后噪声的慢(约5 Hz)和快(约120 Hz)成分的转折频率相当。用不可水解的ATP衍生物5'-腺苷酰亚胺二磷酸(AMP - PNP)或无镁溶液进行内部透析,显著降低了高钾诱导电流的幅度和波动。在每次使用AMP - PNP或无镁内部溶液透析或ACh灌流的实验中,电流波动方差与平均电流幅度之间的关系呈线性。这些关系的斜率在-50 mV时给出了相当的单通道电流幅度-0.7 pA。这些结果表明,毒蕈碱型钾通道的自发开放在很大程度上是高钾诱导电流的原因。在高钾溶液中,-50 mV时的方差-均值关系表明,毒蕈碱型钾通道提供3.12±2.13 pA pF⁻¹的内向电流(n = 23),约占总内向背景电流的60%。在正常钾溶液中,-50 mV时的方差-均值关系表明,钾通道提供6.0±2.0 pA(0.33±0.28 pA pF⁻¹,n = 8)的外向电流。单通道电流幅度估计为0.06±0.02 pA(n = 9)。在无ACh的情况下进行细胞贴附记录,显示出与ACh诱导通道相同的通道的零星短暂开放。单通道电流的功率密度谱表现出与全细胞电流相当的动力学特性。(摘要截短至400字)

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