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兔尿道平滑肌中“α2拮抗剂”[3H]咪唑克生的非肾上腺素能结合位点。药理学和生化特性

Non-adrenergic binding sites for the "alpha 2-antagonist" [3H]idazoxan in the rabbit urethral smooth muscle. Pharmacological and biochemical characterization.

作者信息

Yablonsky F, Dausse J P

机构信息

Laboratoires Debat, Garches, France.

出版信息

Biochem Pharmacol. 1991 Mar 1;41(5):701-7. doi: 10.1016/0006-2952(91)90069-h.

Abstract

In the present study, pharmacological and biochemical binding characteristics of [3H]idazoxan, an originally thought alpha 2-adrenoceptor antagonist, have been determined in smooth muscle of rabbit urethra. It is shown that [3H]idazoxan labels with high affinity non-adrenergic binding sites. Specific binding of [3H]idazoxan is inhibited by compounds possessing an imidazoline or a guanidinium moiety whereas phenylethanolamines and classical alpha 2-antagonists are ineffective competitors which suggests an imidazoline-preferring binding site. However, imidazolidines such as clonidine and paminoclonidine are poorly effective, which differs considerably from pharmacological characteristics of imidazoline binding sites previously reported in the central nervous system. In addition, it is shown that K+ and Mn2+ inhibit [3H]idazoxan binding in a competitive and non-competitive manner, respectively. Other cations such as Na+, Li+ and Mg2+ have no significant effect. It is shown that K+ accelerates the dissociation of [3H]idazoxan binding while Mn2+ does not produce any modification. These results suggest that K+ may bind to an allosteric site, while Mn2+ may bind with a membrane component susceptible to alter [3H]idazoxan binding sites.

摘要

在本研究中,已在兔尿道平滑肌中测定了最初被认为是α2肾上腺素能受体拮抗剂的[3H]咪唑克生的药理学和生化结合特性。结果表明,[3H]咪唑克生以高亲和力标记非肾上腺素能结合位点。[3H]咪唑克生的特异性结合受到具有咪唑啉或胍基部分的化合物的抑制,而苯乙醇胺和经典的α2拮抗剂是无效的竞争者,这表明存在一个优先结合咪唑啉的位点。然而,可乐定和对氨基可乐定等咪唑烷类药物效果不佳,这与先前在中枢神经系统中报道的咪唑啉结合位点的药理学特性有很大不同。此外,研究表明,K+和Mn2+分别以竞争性和非竞争性方式抑制[3H]咪唑克生的结合。其他阳离子如Na+、Li+和Mg2+没有显著影响。结果表明,K+加速[3H]咪唑克生结合的解离,而Mn2+不产生任何改变。这些结果表明,K+可能与变构位点结合,而Mn2+可能与易改变[3H]咪唑克生结合位点的膜成分结合。

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