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1,4-二氢-[1,4]二氮杂环庚烷-5,7-二酮的简明合成,一种具有促黑素皮质受体激动活性的新型 7-TM 受体配体核心结构。

A concise synthesis of 1,4-dihydro-[1,4]diazepine-5,7-dione, a novel 7-TM receptor ligand core structure with melanocortin receptor agonist activity.

机构信息

Department of Medicinal Chemistry, Five Moore Drive, PO Box 13398, Research Triangle Park, NC 27709-3398, USA.

出版信息

Bioorg Med Chem. 2010 Mar 1;18(5):1822-33. doi: 10.1016/j.bmc.2010.01.049. Epub 2010 Jan 25.

DOI:10.1016/j.bmc.2010.01.049
PMID:20172734
Abstract

Finding small non-peptide molecules for G protein-coupled receptors (GPCR) whose endogenous ligands are peptides, is a very important task for medicinal chemists. Over the years, compounds mimicking peptide structures have been discovered, and scaffolds emulating peptide backbones have been designed. In our work on GPCR ligands, including cholecystokinin receptor-1 (CCKR-1) agonists, we have employed benzodiazepines as a core structure. Looking for ways to reduce molecular weight and possibly improve physical properties of GPCR ligands, we embarked on the search for molecules providing similar scaffolds to the benzodiazepine with lower molecular weight. One of our target core structures was 1,4-dihydro-[1,4]diazepine-5,7-dione. There was not, however, a known synthetic route to such molecules. Here we report the discovery of a simple and concise method for synthesis of 2-[6-(1H-indazol-3-ylmethyl)-5,7-dioxo-4-phenyl-4,5,6,7-tetrahydro-[1,4]diazepin-1-yl]-N-isopropyl-N-phenyl-acetamide as an example of a compound containing the tetrahydrodiazepine-5,7-dione core. Compounds from this series were tested in numerous GPCR assays and demonstrated activity at melanocortin 1 and 4 receptors (MC1R and MC4R). Selected compounds from this series were tested in vivo in Peptide YY (PYY)-induced food intake. Compounds dosed by intracerebroventricular and oral routes reduced PYY-induced food intake and this effect was reversed by the cyclic peptide MC4R antagonist SHU9119.

摘要

寻找与内源性配体为肽的 G 蛋白偶联受体(GPCR)相匹配的小非肽类分子,是药物化学家的一项非常重要的任务。多年来,人们已经发现了许多模拟肽结构的化合物,并设计了模拟肽骨架的支架。在我们对 GPCR 配体的研究中,包括胆囊收缩素受体-1(CCKR-1)激动剂,我们采用了苯并二氮䓬作为核心结构。为了降低分子重量并可能改善 GPCR 配体的物理性质,我们开始寻找提供与苯并二氮䓬类似支架但分子量更低的分子。我们的一个目标核心结构是 1,4-二氢-[1,4]二氮䓬-5,7-二酮。然而,没有已知的合成途径可以得到这样的分子。在这里,我们报告了一种简单而简洁的方法来合成 2-[6-(1H-吲唑-3-基甲基)-5,7-二氧代-4-苯基-4,5,6,7-四氢-[1,4]二氮䓬-1-基]-N-异丙基-N-苯基-乙酰胺,作为含有四氢二氮䓬-5,7-二酮核心的化合物的一个例子。该系列化合物在许多 GPCR 测定中进行了测试,并在黑皮质素 1 和 4 受体(MC1R 和 MC4R)中显示出活性。该系列中的选定化合物在体内进行了肽 YY(PYY)诱导的食物摄入试验。通过脑室内和口服途径给药的化合物可减少 PYY 诱导的食物摄入,而这种作用可被环状肽 MC4R 拮抗剂 SHU9119 逆转。

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