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二氢吡啶对L型钙通道亚型特异性的抑制作用与亚型特异性门控特性无关。

Isoform-specific inhibition of L-type calcium channels by dihydropyridines is independent of isoform-specific gating properties.

作者信息

Hu H, Marban E

机构信息

Section of Molecular and Cellular Cardiology, Department of Medicine, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Mol Pharmacol. 1998 May;53(5):902-7.

PMID:9584217
Abstract

Dihydropyridines (DHPs) block L-type Ca2+ channels more potently at depolarized membrane potentials, consistent with high affinity binding to the inactivated state. Nisoldipine (a DHP antagonist) blocks the smooth muscle channel more potently than the cardiac one, a phenomenon observed not only in native channels but also in expressed channels. We examined whether this tissue specificity was attributable to differences of inactivation in the two channel types. We expressed cardiac or smooth muscle alpha1C subunits in combination with beta2a and alpha2/delta subunits in human embryonic kidney cells, and used 2 mM Ca2+ as the permeant ion. This system thus reproduces the in vivo topology and charge carrier of the channels while facilitating comparison of the two alpha1C splice variants. Both voltage-dependent and isoform-specific sensitivity of 10 nM nisoldipine inhibition of the channel were demonstrated, with the use of -100 mV as the holding potential for fully reprimed channels and -65 mV to populate the inactivated state. Under drug-free conditions, we characterized fast inactivation (1-sec prepulses) and slow inactivation (3 min prepulses) in the two isoforms. Inactivation parameters were not statistically different in the two channel isoforms; if anything, cardiac channels tended to inactivate more than the smooth muscle channels at relevant voltages. Likewise, the voltage-dependent activation was identical in the two isoforms. We thus conclude that the more potent nisoldipine inhibition of smooth muscle versus cardiac L-type Ca2+ channels is not attributable to differences in channel inactivation or activation. Intrinsic, gating-independent DHP receptor binding affinity differences must be invoked to explain the isoform-specific sensitivity of the DHP block.

摘要

二氢吡啶类(DHPs)在去极化膜电位下更有效地阻断L型Ca2+通道,这与对失活状态的高亲和力结合一致。尼索地平(一种DHP拮抗剂)对平滑肌通道的阻断作用比对心脏通道更有效,这种现象不仅在天然通道中观察到,在表达的通道中也观察到。我们研究了这种组织特异性是否归因于两种通道类型失活的差异。我们将心脏或平滑肌α1C亚基与β2a和α2/δ亚基组合在人胚肾细胞中表达,并使用2 mM Ca2+作为通透离子。因此,该系统再现了通道的体内拓扑结构和电荷载体,同时便于比较两种α1C剪接变体。使用-100 mV作为完全重新激活通道的保持电位,-65 mV使通道处于失活状态,证明了10 nM尼索地平对通道抑制的电压依赖性和亚型特异性敏感性。在无药物条件下,我们对两种亚型的快速失活(1秒预脉冲)和慢速失活(3分钟预脉冲)进行了表征。两种通道亚型的失活参数在统计学上没有差异;如果有差异的话,在相关电压下,心脏通道比平滑肌通道更容易失活。同样,两种亚型的电压依赖性激活是相同的。因此,我们得出结论,尼索地平对平滑肌L型Ca2+通道的抑制作用比对心脏通道更有效并不是由于通道失活或激活的差异。必须调用内在的、与门控无关的DHP受体结合亲和力差异来解释DHP阻断的亚型特异性敏感性。

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