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通过L型钙通道的钡电流的离子依赖性失活。

Ion-dependent inactivation of barium current through L-type calcium channels.

作者信息

Ferreira G, Yi J, Ríos E, Shirokov R

机构信息

Department of Molecular Biophysics and Physiology, Rush University, Chicago, Illinois 60612, USA.

出版信息

J Gen Physiol. 1997 Apr;109(4):449-61. doi: 10.1085/jgp.109.4.449.

Abstract

It is widely believed that Ba2+ currents carried through L-type Ca2+ channels inactivate by a voltage-dependent mechanism similar to that described for other voltage-dependent channels. Studying ionic and gating currents of rabbit cardiac Ca2+ channels expressed in different subunit combinations in tsA201 cells, we found a phase of Ba2+ current decay with characteristics of ion-dependent inactivation. Upon a long duration (20 s) depolarizing pulse, IBa decayed as the sum of two exponentials. The slow phase (tau approximately 6 s, 21 degrees C) was parallel to a reduction of gating charge mobile at positive voltages, which was determined in the same cells. The fast phase of current decay (tau approximately 600 ms), involving about 50% of total decay, was not accompanied by decrease of gating currents. Its amplitude depended on voltage with a characteristic U-shape, reflecting reduction of inactivation at positive voltages. When Na+ was used as the charge carrier, decay of ionic current followed a single exponential, of rate similar to that of the slow decay of Ba2+ current. The reduction of Ba2+ current during a depolarizing pulse was not due to changes in the concentration gradients driving ion movement, because Ba2+ entry during the pulse did not change the reversal potential for Ba2+. A simple model of Ca(2+) -dependent inactivation (Shirokov, R., R. Levis, N. Shirokova, and F., Ríos. 1993. J. Gen. Physiol. 102:1005-1030) robustly accounts for fast Ba2+ current decay assuming the affinity of the inactivation site on the alpha 1 subunit to be 100 times lower for Ba2+ than Ca2+.

摘要

人们普遍认为,通过L型钙通道传导的Ba2+电流通过一种电压依赖性机制失活,该机制类似于其他电压依赖性通道所描述的机制。在tsA201细胞中研究以不同亚基组合表达的兔心脏钙通道的离子电流和门控电流时,我们发现Ba2+电流衰减阶段具有离子依赖性失活的特征。在长时间(20秒)去极化脉冲作用下,IBa以两个指数之和的形式衰减。慢相(在21℃时,时间常数约为6秒)与在相同细胞中测定的正电压下门控电荷移动的减少平行。电流衰减的快相(时间常数约为600毫秒),约占总衰减的50%,不伴随门控电流的减少。其幅度取决于电压,呈特征性的U形,反映正电压下失活的减少。当使用Na+作为电荷载体时,离子电流的衰减遵循单一指数,速率与Ba2+电流的慢衰减相似。去极化脉冲期间Ba2+电流的减少不是由于驱动离子移动的浓度梯度的变化,因为脉冲期间Ba2+的进入并没有改变Ba2+的反转电位。一个简单的钙依赖性失活模型(Shirokov, R., R. Levis, N. Shirokova, and F., Ríos. 1993. J. Gen. Physiol. 102:1005 - 1030)假设α1亚基上失活位点对Ba2+的亲和力比对Ca2+低100倍,有力地解释了Ba2+电流的快速衰减。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d48/2219436/0697d07b8e0b/JGP.ferreira1.jpg

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