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利用选择性促黑素皮质素3受体拮抗剂对导致受体失活的选择性配体-受体相互作用的结构洞察

Structural Insights into Selective Ligand-Receptor Interactions Leading to Receptor Inactivation Utilizing Selective Melanocortin 3 Receptor Antagonists.

作者信息

Cai Minying, Marelli Udaya Kiran, Mertz Blake, Beck Johannes G, Opperer Florian, Rechenmacher Florian, Kessler Horst, Hruby Victor J

机构信息

Department of Chemistry and Biochemistry, University of Arizona , Tucson, Arizona 85721, United States.

Institute for Advanced Study (IAS) and Center for Integrated Protein Science (CIPSM), Department Chemie, Technische Universität München , 85747 Garching, Germany.

出版信息

Biochemistry. 2017 Aug 15;56(32):4201-4209. doi: 10.1021/acs.biochem.7b00407. Epub 2017 Aug 1.

Abstract

Systematic N-methylated derivatives of the melanocortin receptor ligand, SHU9119, lead to multiple binding and functional selectivity toward melanocortin receptors. However, the relationship between N-methylation-induced conformational changes in the peptide backbone and side chains and melanocortin receptor selectivity is still unknown. We conducted comprehensive conformational studies in solution of two selective antagonists of the third isoform of the melanocortin receptor (hMC3R), namely, Ac-Nle-c[Asp-NMe-His-d-Nal(2')-NMe-Arg-Trp-Lys]-NH (15) and Ac-Nle-c[Asp-His-d-Nal(2')-NMe-Arg-NMe-Trp-NMe-Lys]-NH (17). It is known that the pharmacophore (His-DNal-Arg-Trp) of the SHU-9119 peptides occupies a β II-turn-like region with the turn centered about DNal-Arg. The analogues with hMC3R selectivity showed distinct differences in the spatial arrangement of the Trp side chains. In addition to our NMR studies, we also carried out molecular-level interaction studies of these two peptides at the homology model of hMC3R. Earlier chimeric human melanocortin 3 receptor studies revealed insights regarding the binding and functional sites of hMC3R selectivity. Upon docking of peptides 15 and 17 to the binding pocket of hMC3R, it was revealed that Arg and Trp side chains are involved in a majority of the interactions with the receptor. While Arg forms polar contacts with D154 and D158 of hMC3R, Trp utilizes π-π stacking interactions with F295 and F298, located on the transmembrane domain of hMC3R. It is hypothesized that as the frequency of Trp-hMC3R interactions decrease, antagonistic activity increases. The absence of any interactions of the N-methyl groups with hMC3R suggests that their primary function is to modulate backbone conformations of the ligands.

摘要

促黑素皮质素受体配体SHU9119的系统性N-甲基化衍生物对促黑素皮质素受体具有多种结合和功能选择性。然而,肽主链和侧链中N-甲基化诱导的构象变化与促黑素皮质素受体选择性之间的关系仍然未知。我们对促黑素皮质素受体(hMC3R)第三种亚型的两种选择性拮抗剂,即Ac-Nle-c[Asp-NMe-His-d-Nal(2')-NMe-Arg-Trp-Lys]-NH(15)和Ac-Nle-c[Asp-His-d-Nal(2')-NMe-Arg-NMe-Trp-NMe-Lys]-NH(17),进行了溶液中的全面构象研究。已知SHU-9119肽的药效基团(His-DNal-Arg-Trp)占据一个类似β II-转角的区域,转角以DNal-Arg为中心。具有hMC3R选择性的类似物在色氨酸侧链的空间排列上表现出明显差异。除了我们的核磁共振研究外,我们还在hMC3R的同源模型上对这两种肽进行了分子水平的相互作用研究。早期的嵌合人促黑素皮质素3受体研究揭示了关于hMC3R选择性的结合和功能位点的见解。将肽15和17对接至hMC3R的结合口袋后发现,精氨酸和色氨酸侧链参与了与受体的大部分相互作用。精氨酸与hMC-3R的D154和D158形成极性接触,而色氨酸则与位于hMC3R跨膜结构域上的F295和F298利用π-π堆积相互作用。据推测,随着色氨酸与hMC3R相互作用频率的降低,拮抗活性增加。N-甲基基团与hMC3R没有任何相互作用,这表明它们的主要功能是调节配体的主链构象。

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