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从犬心脏肌浆网分离出的单个钾离子通道的电压和温度依赖性

Voltage and temperature dependence of single K+ channels isolated from canine cardiac sarcoplasmic reticulum.

作者信息

Shen W K, Rasmusson R L, Liu Q Y, Crews A L, Strauss H C

机构信息

Department of Pharmacology, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

Biophys J. 1993 Aug;65(2):747-54. doi: 10.1016/S0006-3495(93)81100-7.

Abstract

The temperature and voltage dependence of gating and conductance of sarcoplasmic reticulum K+ channels (S-R K+) isolated from adult canine hearts were studied using the reconstituted bilayer technique. Fusion of vesicles from this preparation frequently resulted in the incorporation of a single channel. Only bilayers into which a single S-R K+ channel had fused were studied. The three conductance states of the channel, fully open (O2), substate conductance (O1), and closed (C) were studied as a function of voltage (-50 to +50 mV) and temperature (16 to 37 degrees C). Permeation through the O1 state showed the same temperature dependence as the O2 state corresponding to an enthalpy of permeation of 4.1-4.2 kcal/mol, which is similar to that for K+ diffusion through water. As expected, increased temperature increased the frequency of gating transitions and shortened the average dwell time spent in any conductance state. Over the range of 25 to 37 degrees C, the average dwell time spent in the O1, O2, and C states decreased by 44 +/- 11, 36 +/- 13, and 78 +/- 7% (n = 3 to 4 channels), respectively. The ratio of probabilities between the various conductance states was not strongly temperature sensitive. Analysis of the voltage dependence of this channel was carried out at 37 degrees C and revealed that the dwell times of the O1 and O2 states were voltage insensitive and the probability ratio (PO2:PO1) was approximately 7 and was voltage insensitive. Nonlinear least-squares analysis of dwell times revealed that the closed state was biexponential and was thus composed of a fast (Cf) and a slow (C8) component.Tcf was voltage insensitive with an average value of 5.9 ms, whereas tau c was approximately two orders of magnitude slower and was voltage dependent. The voltage dependence of Cs was described by Tau c (ms) = exp(-0.025-(Vm (mV) - 250)).

摘要

采用重组双层膜技术研究了从成年犬心脏分离的肌浆网钾通道(S-R K+)门控和电导的温度及电压依赖性。该制剂囊泡的融合经常导致单个通道的掺入。仅研究了单个S-R K+通道融合其中的双层膜。研究了通道的三种电导状态,即完全开放(O2)、亚态电导(O1)和关闭(C)状态随电压(-50至+50 mV)和温度(16至37摄氏度)的变化。通过O1状态的通透表现出与O2状态相同的温度依赖性,对应的通透焓为4.1 - 4.2千卡/摩尔,这与钾离子在水中扩散的情况相似。正如预期的那样,温度升高增加了门控转换的频率,并缩短了在任何电导状态下花费的平均驻留时间。在25至37摄氏度范围内,在O1、O2和C状态下花费的平均驻留时间分别减少了44±11%、36±13%和78±7%(n = 3至4个通道)。不同电导状态之间的概率比对温度不敏感。在37摄氏度下对该通道的电压依赖性进行了分析,结果表明O1和O2状态的驻留时间对电压不敏感,概率比(PO2:PO1)约为7且对电压不敏感。驻留时间的非线性最小二乘分析表明,关闭状态是双指数的,因此由一个快速(Cf)和一个慢速(C8)成分组成。Tcf对电压不敏感,平均值为5.9毫秒,而tau c慢约两个数量级且与电压有关。Cs的电压依赖性由Tau c(毫秒)= exp(-0.025 - (Vm(毫伏) - 250))描述。

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