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Voltage-dependent open-state inactivation of cardiac sodium channels: gating current studies with Anthopleurin-A toxin

机译:心脏钠通道的电压依赖性开放状态失活:花青素-A毒素对门控电流的研究

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摘要

The gating charge and voltage dependence of the open state to the inactivated state (O-->I) transition was measured for the voltage- dependent mammalian cardiac Na channel. Using the site 3 toxin, Anthopleurin-A (Ap-A), which selectively modifies the O-->I transition (see Hanck, D. A., and M. F. Sheets. 1995. Journal of General Physiology. 106:601-616), we studied Na channel gating currents (Ig) in voltage-clamped single canine cardiac Purkinje cells at approximately 12 degrees C. Comparison of Ig recorded in response to step depolarizations before and after modification by Ap-A toxin showed that toxin-modified gating currents decayed faster and had decreased initial amplitudes. The predominate change in the charge-voltage (Q-V) relationship was a reduction in gating charge at positive potentials such that Qmax was reduced by 33%, and the difference between charge measured in Ap-A toxin and in control represented the gating charge associated with Na channels undergoing inactivation by O-->I. By comparing the time course of channel activation (represented by the gating charge measured in Ap-A toxin) and gating charge associated with the O-->I transition (difference between control and Ap-A charge), the influence of activation on the time course of inactivation could be accounted for and the inherent voltage dependence of the O-->I transition determined. The O-->I transition for cardiac Na channels had a valence of 0.75 e-. The total charge of the cardiac voltage-gated Na channel was estimated to be 5 e-. Because charge is concentrated near the opening transition for this isoform of the channel, the time constant of the O-->I transition at 0 mV could also be estimated (0.53 ms, approximately 12 degrees C). Prediction of the mean channel open time-voltage relationship based upon the magnitude and valence of the O- ->C and O-->I rate constants from INa and Ig data matched data previously reported from single Na channel studies in heart at the same temperature.
机译:测量了电压依赖性哺乳动物心脏Na通道从打开状态到失活状态(O→I)转变的门控电荷和电压依赖性。利用位点3的毒素,花青素-A(Ap-A),它选择性地修饰了O-> I的转变(参见Hanck,DA和MF Sheets。1995. General Physiology。106:601-616),我们在约12摄氏度下研究了电压钳制的单犬心脏Purkinje细胞中的Na通道门控电流(Ig)。Ap-A毒素修饰前后对阶跃去极化响应记录的Ig的比较表明,毒素修饰的门控电流衰减更快并降低了初始振幅。电荷-电压(QV)关系的主要变化是在正电势下门控电荷减少,从而Qmax降低了33%,Ap-A毒素和对照中测得的电荷之差代表与Na通道被O-> I灭活。通过比较通道激活的时间过程(由Ap-A毒素中测得的门控电荷表示)和与O-> I跃迁相关的门控电荷(对照与Ap-A电荷之间的差异),可以看出激活对通道激活的影响可以确定灭活的时间过程,并确定O-> I跃迁的固有电压依赖性。心脏Na通道的O-> I跃迁价为0.75 e-。心脏电压门控Na通道的总电荷估计为5 e-。由于电荷集中在该通道同种型的开放跃迁附近,因此也可以估算O-> I跃迁在0 mV处的时间常数(0.53 ms,大约12摄氏度)。根据INa和Ig数据中O--> C和O-> I速率常数的大小和化合价预测平均通道开放时间-电压关系,该值与先前在同一心脏中通过单个Na通道研究报告的数据相匹配温度。

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