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Structure-activity study of endomorphin-2 analogs with C-terminal modifications by NMR spectroscopy and molecular modeling

机译:NMR光谱和分子模拟研究具有C末端修饰的Endomorphin-2类似物的结构活性

摘要

Endomorphin-2 (EM-2) is a putative endogenous μ-opioid receptor ligand. To get insight into the important role of C-terminal amide group of EM-2, we investigated herein a series of EM-2 analogs by substitution of the C-terminal amide group with -NHNH2, -NHCH3, -N(CH3)2, -OCH3, -OCH2CH3, -OC(CH3)3, and -CH2-OH. Their binding affinity and bioactivity were determined and compared. Despite similar (analogs 1, 4, and 7) or decreased (analogs 2, 3,5, and 6) μ affinity in binding assays, all analogs showed low guinea pig ileum (GPI) and mouse vas deferens (MVD) potencies compared to their parent peptide. Interestingly, as for analogs 2 and 3 (a single and double N-methylation of C-terminal amide), the potency order with the Ki (μ) values was 2 3; for the C-terminal esterified analogs 4-6, the potency order with the Ki (μ) values was 4 5 6. Thus, we concluded that the steric hindrance of C-terminus might play an important role in opioid receptor affinity. We further investigated the conformational properties of these analogs by 1D and 2D 1H NMR spectroscopy and molecular modeling. Evaluating the ratios of cis- and trans-isomers, aromatic interactions, dihedral angles, and stereoscopic views of the most convergent conformers, we found that modifications at the C-terminal amide group of EM-2 affected these analog conformations markedly, therefore changed the opioid receptor affinity and in vitro bioactivity.
机译:Endomorphin-2(EM-2)是推定的内源性μ阿片受体配体。为了深入了解EM-2的C末端酰胺基的重要作用,我们在本文中研究了一系列EM-2类似物,方法是将C末端酰胺基替换为-NHNH2,-NHCH3,-N(CH3)2 ,-OCH 3,-OCH 2 CH 3,-OC(CH 3)3和-CH 2 -OH。测定并比较了它们的结合亲和力和生物活性。尽管在结合试验中μ亲和力相似(模拟1、4和7)或降低(模拟2、3、5和6),但所有类似物均与豚鼠回肠(GPI)和小鼠输精管(MVD)相比具有较低的效力。他们的亲本肽。有趣的是,对于类似物2和3(C端酰胺的单和双N-甲基化),Ki(μ)值的效价级为2> 3;对于C末端酯化类似物4-6,其Ki(μ)值的效力顺序为4> 5>6。因此,我们得出结论,C末端的空间位阻可能在阿片样物质受体亲和力中起重要作用。我们通过1D和2D 1H NMR光谱学和分子建模进一步研究了这些类似物的构象性质。评估顺式和反式异构体的比率,芳族相互作用,二面角和大多数会聚构象异构体的立体图,我们发现EM-2的C末端酰胺基上的修饰显着影响了这些类似构象,因此改变了阿片受体的亲和力和体外生物活性。

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