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三种化合物的平行构效关系筛选确定了吡咯烷双环胍黑素皮质素-3 受体 (MC3R) 小分子配体的共同激动剂药效团。

The Parallel Structure-Activity Relationship Screening of Three Compounds Identifies the Common Agonist Pharmacophore of Pyrrolidine Bis-Cyclic Guanidine Melanocortin-3 Receptor (MC3R) Small-Molecule Ligands.

机构信息

Department of Medicinal Chemistry & Institute for Translational Neuroscience, University of Minnesota, Minneapolis, MN 55455, USA.

Center for Translational Science, Florida International University, Port St. Lucie, FL 34987, USA.

出版信息

Int J Mol Sci. 2023 Jun 14;24(12):10145. doi: 10.3390/ijms241210145.

Abstract

The melanocortin receptors are involved in numerous physiological pathways, including appetite, skin and hair pigmentation, and steroidogenesis. In particular, the melanocortin-3 receptor (MC3R) is involved in fat storage, food intake, and energy homeostasis. Small-molecule ligands developed for the MC3R may serve as therapeutic lead compounds for treating disease states of energy disequilibrium. Herein, three previously reported pyrrolidine bis-cyclic guanidine compounds with five sites for molecular diversity (R1-R5) were subjected to parallel structure-activity relationship studies to identify the common pharmacophore of this scaffold series required for full agonism at the MC3R. The R2, R3, and R5 positions were required for full MC3R efficacy, while truncation of either the R1 or R4 positions in all three compounds resulted in full MC3R agonists. Two additional fragments, featuring molecular weights below 300 Da, were also identified that possessed full agonist efficacy and micromolar potencies at the mMC5R. These SAR experiments may be useful in generating new small-molecule ligands and chemical probes for the melanocortin receptors to help elucidate their roles in vivo and as therapeutic lead compounds.

摘要

黑素皮质素受体参与多种生理途径,包括食欲、皮肤和毛发色素沉着以及类固醇生成。特别是,黑素皮质素-3 受体(MC3R)参与脂肪储存、食物摄入和能量平衡。开发用于 MC3R 的小分子配体可能成为治疗能量失衡疾病状态的治疗先导化合物。在此,对三个先前报道的具有五个分子多样性位点(R1-R5)的吡咯烷双环胍化合物进行了平行的构效关系研究,以确定该支架系列的共同药效基团,该药效基团是在 MC3R 上完全激动所必需的。R2、R3 和 R5 位置是完全 MC3R 功效所必需的,而在所有三种化合物中截短 R1 或 R4 位置都导致完全 MC3R 激动剂。还确定了另外两个片段,它们的分子量低于 300 Da,也具有完全激动剂功效和在 mMC5R 上的微摩尔效力。这些 SAR 实验可能有助于生成新的小分子配体和黑素皮质素受体的化学探针,以帮助阐明它们在体内的作用和作为治疗先导化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85f8/10299128/cb2eb121d702/ijms-24-10145-sch001.jpg

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