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关于具有拮抗剂潜力的神经递质受体激动剂的合成

On the synthesis of neurotransmitter receptor agonists with antagonist potential.

作者信息

Crumrine D S, Choubal M D, Kanofsky J R, Feigenbaum J J

机构信息

Department of Chemistry, Loyola University, Chicago, Illinois 60626, USA.

出版信息

Neurochem Res. 1997 Feb;22(2):107-11. doi: 10.1023/a:1027399003778.

Abstract

The synthesis of a new type of antagonist is described, capable of inactivating neuroreceptors with heretofore unattainable selectivity and permanence. These antagonists are referred to as mazek agonists (i.e. direct, inhibitory agonists) as they have the high receptor affinity and initial receptor-stimulatory effect of direct agonists and are positively coupled to effector systems. However, like direct antagonists, they have a high receptor affinity and the potential to inhibit or prevent receptor stimulation. The synthesis of the present compounds consisted of the covalent attachment of a tethered dye to three different neurotransmitter analogues, resulting in dye-neuropeptide conjugates with a high affinity for the FMRFa receptor. The dye was prepared from azure B (Az), the neurotransmitter was the neuropeptide FMRFamide (FMRFa), and the dye-neuropeptide conjugates synthesized were Az-CFMRFa; Az-CFMRF and Az-CLRFa. In this procedure, the analogues serve as carrier molecules, bound at one end to the receptor and at the other end to the dye, which is thereby brought into close contact with the receptor. The receptor can then be inactivated by singlet oxygen generated by laser irradiation of the photosensitized receptor.

摘要

描述了一种新型拮抗剂的合成,该拮抗剂能够以迄今为止无法实现的选择性和持久性使神经受体失活。这些拮抗剂被称为mazek激动剂(即直接抑制性激动剂),因为它们具有直接激动剂的高受体亲和力和初始受体刺激作用,并且与效应器系统呈正偶联。然而,与直接拮抗剂一样,它们具有高受体亲和力以及抑制或阻止受体刺激的潜力。本化合物的合成包括将连接的染料共价连接到三种不同的神经递质类似物上,从而得到对FMRFa受体具有高亲和力的染料-神经肽缀合物。染料由天青B(Az)制备,神经递质是神经肽FMRF酰胺(FMRFa),合成的染料-神经肽缀合物为Az-CFMRFa、Az-CFMRF和Az-CLRFa。在此过程中,类似物充当载体分子,一端与受体结合,另一端与染料结合,从而使染料与受体紧密接触。然后,通过对光敏化受体进行激光照射产生的单线态氧可使受体失活。

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