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小鼠生精细胞T型钙电流的药理学特性

Pharmacological properties of the T-type Ca2+ current of mouse spermatogenic cells.

作者信息

Arnoult C, Villaz M, Florman H M

机构信息

Laboratoire de Biophysique Moléculaire et Cellulaire, CNRS URA 520, CEA/Grenoble, 38054 Grenoble, France.

出版信息

Mol Pharmacol. 1998 Jun;53(6):1104-11.

PMID:9614215
Abstract

The effects of pharmacological agents on the T-type Ca2+ current were studied in dissociated spermatogenic cells from the mouse. Ca2+ currents were elicited by depolarization in 10 mM Ca2+ and recorded in the whole-cell configuration of the patch clamp technique. The T-type current was inhibited by the following compounds: PN200-110 (IC50 = 4 x 10(-8) M) > nifedipine (IC50 = 4 x 10(-7) M) > pimozide (IC50 = 4.6 x 10(-7) M) > mibefradil (IC50 = 5 x 10(-6) M) > Ni2+ (IC50 = 3.4 x 10(-5) M) > verapamil (IC50 = 7 x 10(-5) M) > amiloride (IC50 = 2.4 x 10(-4) M) > Cd2+ (IC50 = 2.8 x 10(-4) M). However, the agents differed in the reversibility and the use dependence of their effects. Currents recovered rapidly and completely after removal of Ni2+, Cd2+, amiloride, or mibefradil, whereas recovery from verapamil block was rapid but incomplete. In contrast, we observed little recovery after the removal of pimozide and of the dihydropyridines (PN200-110, nifedipine). Moreover, mibefradil and pimozide exhibit a strongly use-dependent inhibition of current that is due to selective interaction of these drugs with the open state and the inactivated state of the channel, respectively, rather than with the resting state. These properties of the spermatogenic T-type Ca2+ channel differ from those of somatic cell T channels and suggest a molecular diversity of low voltage-activated Ca2+ channels.

摘要

研究了药理学试剂对从小鼠分离的生精细胞中T型Ca2+电流的影响。在含有10 mM Ca2+的溶液中通过去极化诱发Ca2+电流,并采用膜片钳技术的全细胞模式进行记录。以下化合物可抑制T型电流:PN200 - 110(IC50 = 4×10(-8) M)>硝苯地平(IC50 = 4×10(-7) M)>匹莫齐特(IC50 = 4.6×10(-7) M)>米贝拉地尔(IC50 = 5×10(-6) M)> Ni2+(IC50 = 3.4×10(-5) M)>维拉帕米(IC50 = 7×10(-5) M)>阿米洛利(IC50 = 2.4×10(-4) M)> Cd2+(IC50 = 2.8×10(-4) M)。然而,这些试剂在作用的可逆性和使用依赖性方面存在差异。去除Ni2+、Cd2+、阿米洛利或米贝拉地尔后,电流迅速且完全恢复,而从维拉帕米阻滞中恢复则迅速但不完全。相比之下,去除匹莫齐特和二氢吡啶类药物(PN200 - 110、硝苯地平)后几乎没有恢复。此外,米贝拉地尔和匹莫齐特分别通过与通道的开放状态和失活状态选择性相互作用,而非与静息状态相互作用,对电流表现出强烈的使用依赖性抑制。生精细胞T型Ca2+通道的这些特性与体细胞T通道的特性不同,提示低电压激活Ca2+通道存在分子多样性。

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