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Temperature dependence of unitary properties of an ATP-dependent potassium channel in cardiac myocytes.

机译:温度依赖性心肌细胞中ATP依赖性钾通道的单一特性。

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摘要

The temperature dependence of the properties of unitary currents in cultured rat ventricular myocytes has been studied. Currents flowing through an ATP-dependent K+ channel were recorded from inside-out patches with the bath temperature varied from 10 degrees to 30 degrees C. The channel conductance was 56 pS at room temperature (22 degrees C), and the amplitudes of unitary currents and the channel conductance exhibited a relatively weak (Q10 from 1.4 to 1.6) dependence on temperature. The temperature dependence of channel mean open times was biphasic with the low temperature (10-20 degrees C) range showing a relatively stronger temperature dependence (Q10 of 2.3) than the high temperature (20-30 degrees C) range (Q10 of 1.6). The activation energies for the two regions were determined from an Arrhenius plot with the activation energy, corresponding to the lower temperature range, near 16 kcal/mol. Thermodynamic analysis, using transition rate theory, indicated that the formation of a transition state prior to channel closure to be associated with a positive entropy component for the high Q10 region.
机译:已经研究了培养的大鼠心室肌细胞中单位电流特性的温度依赖性。从里到外的贴片记录流过ATP依赖的K +通道的电流,浴温在10到30摄氏度之间变化。在室温(22摄氏度)下,通道电导为56 pS,单位电流的幅度通道电导对温度的依赖性相对较弱(Q10从1.4到1.6)。通道平均打开时间的温度依赖性是双相的,在低温(10-20摄氏度)范围内显示出比高温(20-30摄氏度)相对较高的温度依赖性(Q10为2.3)(Q10为1.6) 。这两个区域的活化能由Arrhenius图确定,活化能对应于较低的温度范围,接近16 kcal / mol。使用跃迁速率理论进行的热力学分析表明,在通道关闭之前,过渡态的形成与高Q10区域的正熵分量相关。

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