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猪脂肪细胞中存在经典β3-肾上腺素能受体的证据。

Evidence of classic beta 3-adrenergic receptors in porcine adipocytes.

作者信息

Mersmann H J

机构信息

USDA/ARS Children's Nutrition Research Center, Department of Pediatrics, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

J Anim Sci. 1996 May;74(5):984-92. doi: 10.2527/1996.745984x.

Abstract

Adipocytes from several mammalian species have predominant beta 3-adrenergic receptors (beta 3-AR). Attempts to classify porcine adipocyte beta-adrenergic receptors (beta-AR) into subtypes have not been successful. Selectivity of agonists and antagonists for stimulation of lipolysis and for ligand binding is considerably more restrictive than for the classic rat and guinea pig beta-AR subtypes. The unique pattern for activity of agonists and antagonists in porcine beta-AR precludes analogy to classic receptors and consequently there is no conclusive evidence regarding porcine beta-AR subtypes. Porcine adipocyte membranes were used in ligand binding experiments designed specifically to demonstrate beta 3-AR. Equilibrium saturation curves with dihydroalprenolol, CGP 12,177, or iodocyanopindolol indicated saturation at low concentrations with a single binding site. Equilibrium competitive ligand binding with iodocyanopindolol as radioligand and isoproterenol or propranolol as competitive ligands indicated both ligands totally inhibited radioligand binding; propranolol was more potent than isoproterenol. Nonradioactive CGP 12,177 also competed with iodocyanopindolol. Ligand binding experiments provided no evidence of a low-affinity beta-AR (binding at high concentrations of ligand), the beta 3-AR. Positive evidences of a beta 3-AR were that CGP 12,177, a beta 1- and beta 2-adrenergic receptor antagonist but a beta 3-AR agonist, partially stimulated porcine adipocyte lipolysis. Furthermore, transcripts for a beta 3-AR, as well as a beta 1- and beta 2-AR, have been demonstrated in RNA from porcine adipocytes in other studies. The beta-AR subtypes expressed and functional in porcine adipocytes remain unknown. The multiple ligand binding sites cannot be attributed to classic beta-AR subtypes. The porcine beta-AR may be a single unique receptor to impart atypical binding properties, or more likely, multiple subtypes, each different enough from classic subtypes to impart the unique properties observed.

摘要

几种哺乳动物的脂肪细胞主要表达β3 - 肾上腺素能受体(β3 - AR)。将猪脂肪细胞β - 肾上腺素能受体(β - AR)分类为亚型的尝试尚未成功。激动剂和拮抗剂对脂肪分解刺激和配体结合的选择性比经典的大鼠和豚鼠β - AR亚型严格得多。猪β - AR中激动剂和拮抗剂的独特活性模式无法与经典受体进行类比,因此关于猪β - AR亚型没有确凿证据。猪脂肪细胞膜用于专门设计的配体结合实验以证明β3 - AR。用二氢阿普洛尔、CGP 12,177或碘氰吲哚洛尔得到的平衡饱和曲线表明在低浓度下有一个单一结合位点的饱和现象。以碘氰吲哚洛尔为放射性配体、异丙肾上腺素或普萘洛尔为竞争性配体的平衡竞争性配体结合表明两种配体都完全抑制放射性配体结合;普萘洛尔比异丙肾上腺素更有效。非放射性的CGP 12,177也与碘氰吲哚洛尔竞争。配体结合实验没有提供低亲和力β - AR(在高浓度配体下结合)即β3 - AR的证据。β3 - AR的阳性证据是,CGP 12,177,一种β1和β2肾上腺素能受体拮抗剂但却是β3 - AR激动剂,能部分刺激猪脂肪细胞的脂肪分解。此外,在其他研究中已在猪脂肪细胞的RNA中证明了β3 - AR以及β1和β2 - AR的转录本。在猪脂肪细胞中表达并具有功能的β - AR亚型仍然未知。多个配体结合位点不能归因于经典的β - AR亚型。猪β - AR可能是赋予非典型结合特性的单一独特受体,或者更有可能是多个亚型,每个亚型与经典亚型差异足够大,从而赋予所观察到的独特特性。

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