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首页> 外文期刊>Archives of physiology and biochemistry >Identification and characterization of the imidazoline I2b-binding sites in the hamster brown adipose tissue as a study model for imidazoline receptors.
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Identification and characterization of the imidazoline I2b-binding sites in the hamster brown adipose tissue as a study model for imidazoline receptors.

机译:鉴定和表征仓鼠棕色脂肪组织中的咪唑啉I2b结合位点,作为咪唑啉受体的研究模型。

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摘要

The imidazoline-type compound, MPV-1743, has been found to activate nonshivering thermogenesis (NST) in brown adipose tissue (BAT) of the genetically obese Zucker rats. The regulation of NST in BAT is linked to the catecholamine metabolism, and the imidazoline I2-binding sites have been found on the monoamine oxidase, a catecholamine metabolising enzyme. In this study, the I2-binding sites of hamster BAT have been characterised using a receptor binding assay with 3H-idazoxan as a radioligand, and the interaction of MPV-1743 with these I2-binding sites has been studied using the enantiomers of MPV 1743, that is, MPV 2088 and MPV 2089. Cirazoline was used to determine the specific binding of 3H-idazoxan to the imidazoline I2-binding sites. Rauwolscine was added in the 3H-idazoxan binding assay in order to inhibit any binding to potential alpha2-adrenergic sites. In the presence of rauwolscine mask 3H-Idazoxan labelled a population of non-adrenergic binding sites expressing the properties of the imidazoline I2b-receptor subtype similar to that found in the rat liver (cirazoline guanabenz = amiloride clonidine). The binding of 3H-idazoxan to the I2b-binding sites could be displaced by the imidazole compounds with the following affinities: detomidine (KiHigh 9.2 nM; KiLow 3200 nM), MPV-2088 (KiHigh 19 nM; IKiLow 760 nM) and MPV-2089 (KiHigh 190 nM; KiLow 1300 nM), atipamezole (3500 nM) and dexmedetomidine (Ki 8400 nM). These results have shown that the hamster BAT contains the imidazoline I2b-binding sites with heterogeneous binding properties for some test compounds. In addition, the enantiomers of MPV 1743, that is, MPV 2088 and MPV 2089, had high affinity to these BAT imidazoline I2b-binding sites. Therefore, it is suggested that the regulation of NST in the hamster BAT may be an attractive model to study the role of imidazoline I2b-binding sites.
机译:已发现咪唑啉型化合物MPV-1743可以激活遗传性肥胖Zucker大鼠的棕色脂肪组织(BAT)中的无颤动生热(NST)。 BAT中NST的调节与儿茶酚胺的代谢有关,并且在单胺氧化酶(一种儿茶酚胺代谢酶)上发现了咪唑啉I2结合位点。在这项研究中,仓鼠BAT的I2结合位点已使用3H-咪唑azo作为放射性配体的受体结合试验进行了表征,并且已使用MPV 1743的对映异构体研究了MPV-1743与这些I2结合位点的相互作用,即MPV 2088和MPV2089。使用Cirazoline来确定3H-idazoxan与咪唑啉I2-结合位点的特异性结合。为了抑制与潜在的α2-肾上腺素位点的任何结合,在3H-咪唑并恶唑结合试验中加入了牛头草素。在存在鼠李甲素面膜的情况下,3H-Idazoxan标记了一组非肾上腺素结合位点,这些结合位点表达的咪唑啉I2b受体亚型的性质类似于在大鼠肝脏中发现的特征(cirazoline guanabenz = amiloride 可乐定)。咪唑化合物可取代具有3种亲和力的3H-咪唑烷与I2b结合位点的结合:地托米定(KiHigh 9.2 nM; KiLow 3200 nM),MPV-2088(KiHigh 19 nM; IKiLow 760 nM)和MPV- 2089(KiHigh 190 nM; KiLow 1300 nM),阿帕米唑(3500 nM)和右美托咪定(Ki 8400 nM)。这些结果表明仓鼠BAT包含咪唑啉I 2b结合位点,对于某些测试化合物,该位点具有异质结合特性。另外,MPV 1743的对映异构体,即MPV 2088和MPV 2089,对这些BAT咪唑啉I2b结合位点具有高亲和力。因此,建议研究仓鼠BAT中NST的调控可能是研究咪唑啉I2b结合位点作用的诱人模型。

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