Shi A G, Ahmad S, Kwan C Y, Daniel E E
Department of Biomedical Sciences, McMaster University, Hamilton, Ontario, Canada.
J Cardiovasc Pharmacol. 1990 Apr;15(4):515-26. doi: 10.1097/00005344-199004000-00001.
Binding of the alpha-adrenergic antagonists [3H]prazosin and [3H]rauwolscine to well-characterized subcellular membrane fractions isolated from dog mesenteric arteries and veins was studied. Binding of both ligands was saturable with Kd values of 0.5 +/- 0.1 nM for [3H]prazosin and 5.85 +/- 0.85 nM for [3H]rauwolscine in arteries, and 0.87 +/- 0.4 nM for [3H]prazosin and 6.6 +/- 1.5 nM for [3H]rauwolscine in veins. In veins, the maximum number of binding sites for [3H]rauwolscine was higher than that for [3H]prazosin, whereas in arteries the maximum number of binding sites for each ligand was similar. In microsomes from dog aorta, the maximum number of bindings sites for [3H]prazosin was higher than that for [3H]rauwolscine. Neuronal membrane contamination in these studies was minimized by dissection procedures and evaluated by the comparison of [3H]saxitoxin binding in various preparations. Only mesenteric veins responded functionally to agonists acting on alpha 2 adrenoceptors. This study thus identified two distinct populations of [3H]prazosin and [3H]rauwolscine binding sites in the plasma membranes of dog mesenteric vessels and suggests that a much higher density of alpha 2-compared to alpha 1-adrenoceptor binding sites is required for a contractile response.
研究了α-肾上腺素能拮抗剂[³H]哌唑嗪和[³H]萝芙辛与从犬肠系膜动脉和静脉分离得到的、特性明确的亚细胞膜组分的结合情况。两种配体的结合均具有饱和性,在动脉中,[³H]哌唑嗪的Kd值为0.5±0.1 nM,[³H]萝芙辛的Kd值为5.85±0.85 nM;在静脉中,[³H]哌唑嗪的Kd值为0.87±0.4 nM,[³H]萝芙辛的Kd值为6.6±1.5 nM。在静脉中,[³H]萝芙辛的最大结合位点数高于[³H]哌唑嗪,而在动脉中,每种配体的最大结合位点数相似。在犬主动脉微粒体中,[³H]哌唑嗪的最大结合位点数高于[³H]萝芙辛。在这些研究中,通过解剖程序将神经元膜污染降至最低,并通过比较不同制剂中[³H]石房蛤毒素的结合情况进行评估。只有肠系膜静脉对作用于α₂肾上腺素能受体的激动剂有功能反应。因此,本研究在犬肠系膜血管的质膜中鉴定出了两个不同的[³H]哌唑嗪和[³H]萝芙辛结合位点群体,并表明与α₁肾上腺素能受体结合位点相比,产生收缩反应需要更高密度的α₂肾上腺素能受体结合位点。