Gentilucci Luca, Squassabia Federico, De Marco Rossella, Artali Roberto, Cardillo Giuliana, Tolomelli Alessandra, Spampinato Santi, Bedini Andrea
Dipartimento di Chimica G Ciamician, Università degli Studi di Bologna, Italy.
FEBS J. 2008 May;275(9):2315-37. doi: 10.1111/j.1742-4658.2008.06386.x. Epub 2008 Apr 3.
Endogenous and exogenous opiates are currently considered the drugs of choice for treating different kinds of pain. However, their prolonged use produces several adverse symptoms, and in addition, many forms of pain are resistant to any kind of therapy. Therefore, the discovery of compounds active towards mu-opioid receptors (MORs) by alternative pharmacological mechanisms could be of value for developing novel classes of analgesics. There is evidence that some unusual molecules can bind opioid receptors, albeit lacking some of the typical opioid pharmacophoric features. In particular, the recent discovery of a few compounds that showed agonist behavior even in the absence of the primary pharmacophore, namely a protonable amine, led to a rediscussion of the importance of ionic interactions in stabilizing the ligand-receptor complex and in activating signal transduction. Very recently, we synthesized a library of cyclic analogs of the endogenous, MOR-selective agonist endomorphin-1 (YPWF-NH(2)), containing a Gly5 bridge between Tyr1 and Phe4. The cyclopeptide c[YpwFG] showed good affinity and agonist behavior. This atypical MOR agonist does not have the protonable Tyr amine. In order to gain more information about plausible mechanisms of interaction between c[YpwFG] and the opioid receptor, we synthesized a selected set of derivatives containing different bridges between Tyr1 and Phe4, and tested their affinities towards mu-opioid receptors. We performed conformational analysis of the cyclopeptides by NMR spectroscopy and molecular dynamics, and investigated plausible, unprecedented modes of interaction with the MOR by molecular docking. The successive quantum mechanics/molecular mechanics investigation of the complexes obtained by the molecular docking procedure furnished a more detailed description of the binding mode and the electronic properties of the ligands. The comparison with the binding mode of the potent agonist JOM-6 seems to indicate that the cyclic endomorphin-1 analogs interact with the receptor by way of an alternative mechanism, still maintaining the ability to activate the receptor.
内源性和外源性阿片类药物目前被认为是治疗各类疼痛的首选药物。然而,长期使用这些药物会产生多种不良反应,此外,许多类型的疼痛对任何治疗都具有抗性。因此,通过替代药理机制发现对μ-阿片受体(MORs)有活性的化合物对于开发新型镇痛药可能具有重要价值。有证据表明,一些不寻常的分子能够结合阿片受体,尽管它们缺乏一些典型的阿片类药效基团特征。特别是,最近发现了一些化合物,即使在没有主要药效基团(即可质子化胺)的情况下仍表现出激动剂行为,这引发了对离子相互作用在稳定配体-受体复合物和激活信号转导中重要性的重新讨论。最近,我们合成了内源性、MOR选择性激动剂内吗啡肽-1(YPWF-NH₂)的环状类似物库,其中Tyr1和Phe4之间含有一个Gly5桥。环肽c[YpwFG]表现出良好的亲和力和激动剂行为。这种非典型的MOR激动剂没有可质子化的Tyr胺。为了获取更多关于c[YpwFG]与阿片受体相互作用可能机制的信息,我们合成了一组选定的衍生物,这些衍生物在Tyr1和Phe4之间含有不同的桥,并测试了它们对μ-阿片受体的亲和力。我们通过核磁共振光谱和分子动力学对环肽进行了构象分析,并通过分子对接研究了与MOR可能的、前所未有的相互作用模式。对通过分子对接程序获得复合物的连续量子力学/分子力学研究提供了配体结合模式和电子性质的更详细描述。与强效激动剂JOM-6结合模式的比较似乎表明,环状内吗啡肽-1类似物通过一种替代机制与受体相互作用,同时仍保持激活受体的能力。