Bangalore R, Mehrke G, Gingrich K, Hofmann F, Kass R S
Department of Physiology, University of Rochester School of Medicine New York 14642, USA.
Am J Physiol. 1996 May;270(5 Pt 2):H1521-8. doi: 10.1152/ajpheart.1996.270.5.H1521.
We have measured ionic and gating currents in human embryonic kidney (HEK 293) cells transiently transfected with cDNAs encoding subunits of the cardiac voltage-gated L-type Ca2+ channel. Robust recombinant ionic current and associated nonlinear charge movement could be measured over a broad voltage range without contamination by endogenous channel activity. Coexpression of the alpha 2/delta-subunit along with alpha 1- and beta 2-subunits speeded activation and deactivation kinetics and significantly increased the maximal conductance of ionic current. Charge movement was measured at voltages negative to the threshold for activation of ionic current, and gating charge could be immobilized at positive holding potentials that did not inactivate ionic current. The ratio of maximal ionic conductance to maximal charge moved remained the same in the absence or presence of the alpha 2/delta-subunit. However, the maximal amount of charge moved was increased about twofold in the presence of the alpha 2/delta-subunit. These results suggest that coexpression of the alpha 2/delta-subunit enhances the expression of functional L-type channels and, in addition, provide evidence that most of the L-type channel-associated nonlinear charge movement is caused by transitions between nonconducting states of the channel protein that precede the open and inactivated states.
我们已在瞬时转染了编码心脏电压门控L型Ca2+通道亚基的cDNA的人胚肾(HEK 293)细胞中测量了离子电流和门控电流。在很宽的电压范围内都能测量到强大的重组离子电流及相关的非线性电荷移动,且不受内源性通道活性的干扰。α2/δ亚基与α1和β2亚基共表达可加快激活和失活动力学,并显著增加离子电流的最大电导率。在低于离子电流激活阈值的电压下测量电荷移动,并且门控电荷可固定在不会使离子电流失活的正钳制电位下。在不存在或存在α2/δ亚基的情况下,最大离子电导率与最大移动电荷的比率保持不变。然而,在存在α2/δ亚基的情况下,最大移动电荷量增加了约两倍。这些结果表明,α2/δ亚基的共表达增强了功能性L型通道的表达,此外,还提供了证据表明,大多数与L型通道相关的非线性电荷移动是由通道蛋白在开放和失活状态之前的非导电状态之间的转变引起的。