Suppr超能文献

通过同源分子建模和使用嵌合肽配体进行验证来鉴定假定的刺鼠相关蛋白(87-132)-促黑素皮质素4受体相互作用。

Identification of putative agouti-related protein(87-132)-melanocortin-4 receptor interactions by homology molecular modeling and validation using chimeric peptide ligands.

作者信息

Wilczynski Andrzej, Wang Xiang S, Joseph Christine G, Xiang Zhimin, Bauzo Rayna M, Scott Joseph W, Sorensen Nicholas B, Shaw Amanda M, Millard William J, Richards Nigel G, Haskell-Luevano Carrie

机构信息

Department of Medicinal Chemistry, University of Florida, Gainesville, Florida 32610, USA.

出版信息

J Med Chem. 2004 Apr 22;47(9):2194-207. doi: 10.1021/jm0303608.

Abstract

Agouti-related protein (AGRP) is one of only two naturally known antagonists of G-protein-coupled receptors (GPCRs) identified to date. Specifically, AGRP antagonizes the brain melanocortin-3 and -4 receptors involved in energy homeostasis. Alpha-melanocyte stimulating hormone (alpha-MSH) is one of the known endogenous agonists for these melanocortin receptors. Insight into putative interactions between the antagonist AGRP amino acids with the melanocortin-4 receptor (MC4R) may be important for the design of unique ligands for the treatment of obesity related diseases and is currently lacking in the literature. A three-dimensional homology molecular model of the mouse MC4 receptor complex with the hAGRP(87-132) ligand docked into the receptor has been developed to identify putative antagonist ligand-receptor interactions. Key putative AGRP-MC4R interactions include the Arg111 of hAGRP(87-132) interacting in a negatively charged pocket located in a cavity formed by transmembrane spanning (TM) helices 1, 2, 3, and 7, capped by the acidic first extracellular loop (EL1) and specifically with the conserved melanocortin receptor residues mMC4R Glu92 (TM2), mMC4R Asp114 (TM3), and mMC4R Asp118 (TM3). Additionally, Phe112 and Phe113 of hAGRP(87-132) putatively interact with an aromatic hydrophobic pocket formed by the mMC4 receptor residues Phe176 (TM4), Phe193 (TM5), Phe253 (TM6), and Phe254 (TM6). To validate the AGRP-mMC4R model complex presented herein from a ligand perspective, we generated nine chimeric peptide ligands based on a modified antagonist template of the hAGRP(109-118) (Tyr-c[Asp-Arg-Phe-Phe-Asn-Ala-Phe-Dpr]-Tyr-NH(2)). In these chimeric ligands, the antagonist AGRP Arg-Phe-Phe residues were replaced by the melanocortin agonist His/D-Phe-Arg-Trp amino acids. These peptides resulted in agonist activity at the mouse melanocortin receptors (mMC1R and mMC3-5Rs). The most notable results include the identification of a novel subnanomolar melanocortin peptide template Tyr-c[Asp-His-DPhe-Arg-Trp-Asn-Ala-Phe-Dpr]-Tyr-NH(2) that is equipotent to alpha-MSH at the mMC1, mMC3, and mMC5 receptors but is 30-fold more potent than alpha-MSH at the mMC4R. Additionally, these studies identified a new and novel >200-fold MC4R versus MC3R selective peptide Tyr-c[Asp-D-Phe-Arg-Trp-Asn-Ala-Phe-Dpr]-Tyr-NH(2) template. Furthermore, when the His-DPhe-Arg-Trp sequence is used to replace the hAGRP Arg-Phe-Phe residues in the "mini"-AGRP (hAGRP87-120, C105A) template, a potent nanomolar agonist resulted at the mMC1R and MC3-5Rs.

摘要

刺鼠相关蛋白(AGRP)是迄今为止仅有的两种天然已知的G蛋白偶联受体(GPCR)拮抗剂之一。具体而言,AGRP拮抗参与能量稳态的脑黑皮质素-3和-4受体。α-黑素细胞刺激素(α-MSH)是这些黑皮质素受体已知的内源性激动剂之一。深入了解拮抗剂AGRP氨基酸与黑皮质素-4受体(MC4R)之间的假定相互作用,对于设计治疗肥胖相关疾病的独特配体可能很重要,而目前文献中尚缺乏相关内容。已构建了小鼠MC4受体与对接入受体的hAGRP(87 - 132)配体的三维同源分子模型,以确定假定的拮抗剂配体 - 受体相互作用。AGRP与MC4R的关键假定相互作用包括hAGRP(87 - 132)的Arg111在位于由跨膜(TM)螺旋1、2、3和7形成的腔内的带负电荷口袋中相互作用,该口袋由酸性的第一个细胞外环(EL1)封闭,特别是与保守的黑皮质素受体残基mMC4R Glu92(TM2)、mMC4R Asp114(TM3)和mMC4R Asp118(TM3)相互作用。此外,hAGRP(87 - 132)的Phe112和Phe113假定与由mMC4受体残基Phe176(TM4)、Phe193(TM5)、Phe253(TM6)和Phe254(TM6)形成的芳香疏水口袋相互作用。为了从配体角度验证本文提出的AGRP - mMC4R模型复合物,我们基于hAGRP(109 - 118)(Tyr - c[Asp - Arg - Phe - Phe - Asn - Ala - Phe - Dpr] - Tyr - NH(2))的修饰拮抗剂模板生成了九种嵌合肽配体。在这些嵌合配体中,拮抗剂AGRP的Arg - Phe - Phe残基被黑皮质素激动剂His / D - Phe - Arg - Trp氨基酸取代。这些肽在小鼠黑皮质素受体(mMC1R和mMC3 - 5Rs)上产生了激动剂活性。最显著的结果包括鉴定出一种新型的亚纳摩尔黑皮质素肽模板Tyr - c[Asp - His - DPhe - Arg - Trp - Asn - Ala - Phe - Dpr] - Tyr - NH(2),它在mMC1、mMC3和mMC5受体上与α - MSH等效,但在mMC4R上比α - MSH强30倍。此外,这些研究鉴定出一种新的且MC4R与MC3R选择性大于200倍的肽Tyr - c[Asp - D - Phe - Arg - Trp - Asn - Ala - Phe - Dpr] - Tyr - NH(2)模板。此外,当使用His - DPhe - Arg - Trp序列替换“微型”AGRP(hAGRP87 - 120,C105A)模板中的hAGRP Arg - Phe - Phe残基时,在mMC1R和MC3 - 5Rs上产生了一种有效的纳摩尔激动剂。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验