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首页> 外文期刊>Molecular and Cellular Endocrinology >Agonist activity of mammalian gonadotropin-releasing antagonists in chicken gonadotropes reflects marked differences in vertebrate gonadotropin-releasing receptors.
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Agonist activity of mammalian gonadotropin-releasing antagonists in chicken gonadotropes reflects marked differences in vertebrate gonadotropin-releasing receptors.

机译:哺乳动物促性腺激素释放拮抗剂在鸡促性腺激素中的激动活性反映了脊椎动物促性腺激素释放受体的显着差异。

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摘要

The pharmacology of mammalian and avian gonadotropin-releasing (GnRH) receptors differs for agonist analogues. We have therefore compared the activities of mammalian-based GnRH antagonists in sheep and chicken gonadotropes to further elucidate the different structural requirements of the receptors. The antagonist activities of ten GnRH analogues were compared in cultured sheep and chicken pituitary cells by determining the dose required to cause a 50% inhibition of luteinizing hormone secretion (IC50) induced by GnRH at its half-maximal concentration (EC50). Nine analogues showed high antagonist activity in the sheep bioassay. Analogue IC50s varied between half and twice ((1.22-6.06) x 10(-10) M) the GnRH EC50 (3 x 10(-10) M). One of these peptides exhibited partial agonist activity. In contrast, eight of the analogues showed low antagonist activity in chicken pituitary cells, with IC50s varying from 46 to 1490 times ((1.4-44.7) x 10(-7) M) the GnRH EC50 (3 x 10(-9) M) and had a different order of potencies compared with that in the sheep. Furthermore, two analogues did not display antagonist activity at all in the chicken bioassay, but acted as pure agonists, stimulating LH secretion. These findings demonstrate marked differences in pharmacology between the avian and mammalian pituitary GnRH receptors and emphasize that GnRH antagonists, selected for their efficacy in mammals, cannot necessarily be used for physiological studies in non-mammalian vertebrates. The distinctly different pharmacology of the receptors and structural requirements of analogues for agonist/antagonist activity establish a basis for identifying receptor features involved in ligand-induced signal propagation using chimaeras of cloned sheep and chicken receptors.
机译:激动剂类似物的哺乳动物和鸟类促性腺激素释放(GnRH)受体的药理作用不同。因此,我们比较了绵羊和鸡的促性腺激素中基于哺乳动物的GnRH拮抗剂的活性,以进一步阐明受体的不同结构要求。通过确定导致GnRH在半数最大浓度(EC50)下抑制50%GnRH诱导的黄体生成激素分泌(IC50)所需的剂量,比较了培养的绵羊和鸡垂体细胞中十种GnRH类似物的拮抗活性。九种类似物在绵羊生物测定中显示出高的拮抗剂活性。模拟IC50在GnRH EC50(3 x 10(-10)M)的一半到两倍之间((1.22-6.06)x 10(-10)M)变化。这些肽之一显示出部分激动剂活性。相比之下,八个类似物在鸡垂体细胞中表现出低拮抗活性,IC50为GnRH EC50(3 x 10(-9)M)的46到1490倍((1.4-44.7)x 10(-7)M)。 ),其功效与绵羊不同。此外,两种类似物在鸡的生物测定中根本没有表现出拮抗活性,而是充当纯激动剂,刺激LH分泌。这些发现表明禽类和哺乳动物垂体GnRH受体之间在药理学上存在显着差异,并强调由于其在哺乳动物中的功效而选定的GnRH拮抗剂不一定能用于非哺乳动物脊椎动物的生理研究。受体的明显不同的药理学和类似物对激动剂/拮抗剂活性的结构要求为使用克隆的绵羊和鸡受体的嵌合体鉴定参与配体诱导的信号传播的受体特征奠定了基础。

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