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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Neurotensin is an antagonist of the human neurotensin NT2 receptor expressed in Chinese hamster ovary cells.
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Neurotensin is an antagonist of the human neurotensin NT2 receptor expressed in Chinese hamster ovary cells.

机译:神经降压素是在中国仓鼠卵巢细胞中表达的人神经降压素NT2受体的拮抗剂。

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摘要

The human levocabastine-sensitive neurotensin NT2 receptor was cloned from a cortex cDNA library and stably expressed in Chinese hamster ovary (CHO) cells in order to study its binding and signalling characteristics. The receptor binds neurotensin as well as several other ligands already described for neurotensin NT1 receptor. It also binds levocabastine, a histamine H1 receptor antagonist that is not recognised by neurotensin NT1 receptor. Neurotensin binding to recombinant neurotensin NT2 receptor expressed in CHO cells does not elicit a biological response as determined by second messenger measurements. Levocabastine, and the peptides neuromedin N and xenin were also ineffective on neurotensin NT2 receptor activation. Experiments with the neurotensin NT1 receptor antagonists SR48692 and SR142948A, resulted in the unanticipated discovery that both molecules are potent agonists on neurotensin NT2 receptor. Both compounds, following binding to neurotensin NT2 receptor, enhance inositol phosphates (IP) formation with a subsequent [Ca2+]i mobilisation; induce arachidonic acid release; and stimulate mitogen-activated protein kinase (MAPK) activity. Interestingly, these activities are antagonised by neurotensin and levocabastine in a concentration-dependent manner. These activities suggest that the human neurotensin NT2 receptor may be of physiological importance and that a natural agonist for the receptor may exist.
机译:从皮质cDNA文库中克隆人左巴巴汀敏感性神经降压素NT2受体,并在中国仓鼠卵巢(CHO)细胞中稳定表达,以研究其结合和信号传导特性。该受体结合神经降压素以及已经描述的神经降压素NT1受体的其他几种配体。它也结合左旋卡巴汀,这是一种神经降压素NT1受体无法识别的组胺H1受体拮抗剂。如通过第二信使测量所确定的,与在CHO细胞中表达的重组神经降压素NT2受体结合的神经降压素不会引起生物学反应。左卡巴汀,神经营养素N和Xenin肽也对神经降压素NT2受体激活无效。使用神经降压素NT1受体拮抗剂SR48692和SR142948A进行的实验导致了意料不到的发现,这两种分子都是神经降压素NT2受体的有效激动剂。两种化合物都与神经降压素NT2受体结合后,通过随后的[Ca2 +] i动员来增强肌醇磷酸(IP)的形成;诱导花生四烯酸释放;并刺激有丝分裂原激活的蛋白激酶(MAPK)活性。有趣的是,这些活性被神经降压素和左卡泊汀以浓度依赖性方式拮抗。这些活性表明人神经降压素NT2受体可能具有生理重要性,并且可能存在该受体的天然激动剂。

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