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大鼠脑中二氢吡啶结合位点的功能相关物。

A functional correlate for the dihydropyridine binding site in rat brain.

作者信息

Middlemiss D N, Spedding M

出版信息

Nature. 1985;314(6006):94-6. doi: 10.1038/314094a0.

Abstract

Calcium channels, controlling the influx of extracellular Ca2+ and hence neurotransmitter release, exist in the brain. However, drugs classed as calcium antagonists and which inhibit Ca2+ entry through voltage-activated Ca2+ channels in heart and smooth muscle, seem not to affect any aspect of neuronal function in the brain at pharmacologically relevant concentrations. Yet the dihydropyridine calcium antagonists (for example, nitrendipine) bind stereospecifically with high affinity to a recognition site on brain-cell membranes thought to represent the Ca2+ channel and consequently, the physiological relevance of these sites has been questioned. However, activation of voltage-dependent Ca2+ channels can increase cytoplasmic Ca2+ and neurotransmitter release in neuronal tissue. We show here that Bay K8644, a dihydropyridine Ca2+-channel activator, can augment K+-stimulated release of serotonin from rat frontal cortex slices and that these effects can be antagonized by low concentrations of calcium antagonists. As 3H-dihydropyridine binding to cortical membrane preparations resembles the binding in heart and smooth muscle where there are good functional correlates we conclude that the dihydropyridine binding sites in the brain represent functional Ca2+ channels that can be unmasked under certain circumstances.

摘要

大脑中存在钙通道,其控制细胞外Ca2+的内流,进而控制神经递质的释放。然而,归类为钙拮抗剂的药物,在心脏和平滑肌中可抑制通过电压激活的Ca2+通道的Ca2+内流,但在药理学相关浓度下似乎并不影响大脑中神经元功能的任何方面。然而,二氢吡啶类钙拮抗剂(例如尼群地平)以高亲和力立体特异性地结合到被认为代表Ca2+通道的脑细胞膜上的一个识别位点,因此,这些位点的生理相关性受到了质疑。然而,电压依赖性Ca2+通道的激活可增加神经元组织中的细胞质Ca2+和神经递质释放。我们在此表明,二氢吡啶类Ca2+通道激活剂Bay K8644可增强大鼠额叶皮质切片中K+刺激的5-羟色胺释放,且这些效应可被低浓度的钙拮抗剂所拮抗。由于3H-二氢吡啶与皮质膜制剂的结合类似于心脏和平滑肌中的结合,而在心脏和平滑肌中存在良好的功能相关性,我们得出结论,大脑中的二氢吡啶结合位点代表功能性Ca2+通道,在某些情况下可被揭示出来。

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