首页> 外文期刊>Journal of Medicinal Chemistry >Structure-activity relationships of peptides incorporating a bioactive reverse-turn heterocycle at the melanocortin receptors: Identification of a 5800-fold mouse melanocortin-3 receptor (mMC3R) selective antagonist/partial agonist versus the mouse melanocortin-4 receptor (mMC4R)
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Structure-activity relationships of peptides incorporating a bioactive reverse-turn heterocycle at the melanocortin receptors: Identification of a 5800-fold mouse melanocortin-3 receptor (mMC3R) selective antagonist/partial agonist versus the mouse melanocortin-4 receptor (mMC4R)

机译:在黑皮质素受体上结合有生物活性反向杂环的肽的结构活性关系:鉴定5800倍小鼠黑皮质素-3受体(mMC3R)选择性拮抗剂/部分激动剂对小鼠黑皮质素4受体(mMC4R)

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摘要

The melanocortin-3 (MC3) and melanocortin-4 (MC4) receptors regulate energy homeostasis, food intake, and associated physiological conditions. The melanocortin-4 receptor (MC4R) has been studied extensively. Less is known about specific physiological roles of the melanocortin-3 receptor (MC3R). A major obstacle to this lack of knowledge is attributed to a limited number of identified MC3R selective ligands. We previously reported a spatial scanning approach of a 10-membered thioether-heterocycle ring incorporated into a chimeric peptide template that identified a lead nM MC4R ligand. Upon the basis of those results, 17 compounds were designed and synthesized that focused upon modification in the pharmacophore domain. Notable results include the identification of a 0.13 nM potent 5800-fold mMC3R selective antagonist/slight partial agonist versus a 760 nM mMC4R full agonist (ligand 11). Biophysical experiments (two-dimensional 1H NMR and computer-assisted molecular modeling) of this ligand resulted in the identification of an inverse γ-turn secondary structure in the ligand pharmacophore domain.
机译:melanocortin-3(MC3)和melanocortin-4(MC4)受体调节能量稳态,食物摄入和相关的生理状况。 melanocortin-4受体(MC4R)已被广泛研究。关于黑皮质素-3受体(MC3R)的特定生理作用知之甚少。缺乏知识的主要障碍归因于有限数量的已鉴定MC3R选择性配体。我们先前报道了一种掺入嵌合肽模板中的10元硫醚杂环的空间扫描方法,该肽模板确定了nM MC4R前导配体。根据这些结果,设计并合成了17种化合物,这些化合物的重点是药效基团域的修饰。值得注意的结果包括鉴定了0.13 nM有效的5800倍mMC3R选择性拮抗剂/轻度部分激动剂与760 nM mMC4R完全激动剂(配体11)。该配体的生物物理实验(二维1H NMR和计算机辅助分子建模)导致鉴定了配体药效团域中的反向γ-转二级结构。

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