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由3H-米安色林或3H-酮色林标记的5-羟色胺识别位点的调节适应性差异。

Differences in the regulatory adaptation of the 5HT recognition sites labelled by 3H-mianserin or 3H-ketanserin.

作者信息

Barbaccia M L, Gandolfi O, Chuang D M, Costa E

出版信息

Neuropharmacology. 1983 Jan;22(1):123-6. doi: 10.1016/0028-3908(83)90271-x.

Abstract

In crude synaptic membranes prepared from rat brain the sites occupied by 3H-spiroperidol that are displaced by microM concentrations of serotonin (5HT) have been termed 5HT2 receptors (Peroutka and Snyder, 1980). Since the 3H-spiroperidol displaced by 5HT is also displaced very effectively (IC50 in the nM range) by ketanserin and mianserin it was suggested that spiroperidol, mianserin and ketanserin are labelling 5HT2 receptors. Data are presented showing that the 3H-ketanserin and 3H-mianserin bound to crude synaptic membrane in the presence of a H1 receptor blocker are not labelling the same recognition site. Hence from this standpoint the recognition site marked by 3H-mianserin and 3H-ketanserin is not identical. The possibility that allosteric effects are operative in some of these ligand displacements should be entertained.

摘要

在从大鼠脑制备的粗制突触膜中,被微摩尔浓度的血清素(5-羟色胺,5HT)取代的3H-螺哌啶醇占据的位点被称为5HT2受体(佩鲁特卡和斯奈德,1980年)。由于被5HT取代的3H-螺哌啶醇也能被酮色林和米安色林非常有效地取代(IC50在纳摩尔范围内),因此有人提出螺哌啶醇、米安色林和酮色林正在标记5HT2受体。本文给出的数据表明,在H1受体阻滞剂存在的情况下,与粗制突触膜结合的3H-酮色林和3H-米安色林标记的不是同一个识别位点。因此,从这个角度来看,由3H-米安色林和3H-酮色林标记的识别位点并不相同。应该考虑变构效应在其中一些配体取代中起作用的可能性。

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