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大鼠脑突触体中的钙通道:鉴定与药理学特性。有机钙通道阻滞剂的高亲和力阻断作用。

Calcium channels in rat brain synaptosomes: identification and pharmacological characterization. High affinity blockade by organic Ca2+ channel blockers.

作者信息

Turner T J, Goldin S M

出版信息

J Neurosci. 1985 Mar;5(3):841-9. doi: 10.1523/JNEUROSCI.05-03-00841.1985.

Abstract

Rat brain synaptosomes are shown to contain functional voltage-sensitive Ca2+ channels that are inhibited by organic Ca2+ channel blockers. Depolarization of synaptosomes with high K+ stimulates uptake of 45Ca2+ which is biphasic in its time course. Replacement of external Na+ with choline eliminates the slower phase of depolarization-stimulated Ca2+ uptake, leaving only a rapid uptake process which terminates within 1 sec. This rapid, tetrodotoxin-insensitive Ca2+ uptake can be inactivated by prior depolarization of the synaptosomes. Depolarization has no effect on the rate of synatptosomal 22Na+ efflux. These results are interpreted as ruling out Na+/Ca2+ exchange as a mediator of the rapid phase of depolarization-stimulated Ca2+ uptake. A portion (30 to 50%) of the rapid phase of depolarization-stimulated Ca2+ uptake is inhibited by nitrendipine, as is depolarization-stimulated [3H]norepinephrine release from synaptosomes. In external Na+, the inhibition constant (Kapp) for nitrendipine inhibition of Ca2+ uptake is 56 nM. The potency of nitrendipine is increased in the absence of external Na+ (Kapp = 1.7 nM), such that inhibition correlates more closely with the equilibrium dissociation constant for [3H] nitrendipine binding to synaptosomes (Kd = 0.35 nM). Other organic channel blockers (nifedipine, verapamil, D600, and dilitiazem) inhibit the rapid Ca2+ uptake. The potencies of all Ca2+ channel blockers tested by us are in reasonable agreement with their potencies, observed in other laboratories, as blockers of Ca2+ channels in smooth and cardiac muscle. These data demonstrate the existence of active voltage-sensitive Ca2+ channels in synaptosomes.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

大鼠脑突触体被证明含有功能性电压敏感性钙通道,这些通道可被有机钙通道阻滞剂抑制。用高钾使突触体去极化会刺激45Ca2+的摄取,其时间进程呈双相性。用胆碱取代细胞外钠会消除去极化刺激的钙摄取的较慢阶段,仅留下一个在1秒内终止的快速摄取过程。这种快速的、对河豚毒素不敏感的钙摄取可通过突触体预先去极化而失活。去极化对突触体22Na+外流速率没有影响。这些结果被解释为排除了钠/钙交换作为去极化刺激的钙摄取快速阶段的介质。去极化刺激的钙摄取快速阶段的一部分(30%至50%)被尼群地平抑制,突触体去极化刺激的[3H]去甲肾上腺素释放也被抑制。在细胞外钠存在的情况下,尼群地平抑制钙摄取的抑制常数(Kapp)为56 nM。在没有细胞外钠的情况下,尼群地平的效力增加(Kapp = 1.7 nM),使得抑制与[3H]尼群地平与突触体结合的平衡解离常数(Kd = 0.35 nM)更密切相关。其他有机通道阻滞剂(硝苯地平、维拉帕米、D600和地尔硫卓)抑制快速钙摄取。我们测试的所有钙通道阻滞剂的效力与在其他实验室观察到的它们作为平滑肌和心肌中钙通道阻滞剂的效力合理一致。这些数据证明了突触体中存在活性电压敏感性钙通道。(摘要截断于250字)

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