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Synthesis and conformational analysis of a series of galactosyl enkephalin analogues showing high analgesic activity.

机译:一系列具有高止痛活性的半乳糖基脑啡肽类似物的合成和构象分析。

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摘要

Two galactosyl derivatives of [DMet2,Pro5] enkephalin-amide (compound 1), namely [DMet2,Pro5] enkephalin [N1.5-beta-D-galactopyranosyl] amide (compound 2) and O1.5-(beta-D-galactopyranosyl) [DMet2,Hyp5] enkephalin-amide (compound 3) have been synthesized. Such glycosylpeptides have been shown to be extremely potent analgesic agonists. The conformational analysis of these three compounds in DMSO-d6 solution has been carried out using two-dimensional NMR methods. Both the parent compound (1) and the beta N-galactosyl derivative (2) show similar NMR parameters which are consistent with fairly rigid beta-strands at both the N-terminus and C-terminus, connected by a glycine residue that displays a mixture between multiple conformational states. Thus, although the beta N-galactosyl derivative (2) has been shown to be significantly more potent than the parent compound (1) in the tail immersion and paw pressure tests of analgesia, no correlation can be established between the conformation of (1) and (2) in DMSO and the difference in analgesic activity. In contrast, important conformational differences with respect to (1) and (2) have been detected in the beta O-galactosyl derivative (3). In this case, only one of the likely conformations for (1) and (2) are consistent with the experimental data. These data show that the position of the galactose residue in compound (3) causes Gly3 to loose flexibility leading to a more rigid folded conformation. Such a change in conformation could be related to the difference in analgesic activity between (2) and (3).
机译:[DMet2,Pro5]脑啡肽(化合物1)的两个半乳糖基衍生物,即[DMet2,Pro5]脑啡肽[N1.5-β-D-半吡喃糖基]酰胺(化合物2)和O1.5-(β-D-合成了半乳糖吡喃糖基[DMet2,Hyp5]脑啡肽(化合物3)。这类糖肽已被证明是非常有效的止痛激动剂。已使用二维NMR方法对DMSO-d6溶液中的这三种化合物进行了构象分析。母体化合物(1)和βN-半乳糖基衍生物(2)均显示相似的NMR参数,这与N端和C端的相当刚性的β链一致,并通过甘氨酸残基连接,该混合物显示出混合物在多个构象状态之间。因此,尽管在镇痛的尾部浸入和足压测试中,虽然已显示出βN-半乳糖基衍生物(2)比母体化合物(1)显着更有效,但在(1)的构象之间无法建立相关性(2)DMSO与止痛活性的差异。相反,在βO-半乳糖基衍生物(3)中检测到关于(1)和(2)的重要构象差异。在这种情况下,(1)和(2)可能的构象中只有一种与实验数据一致。这些数据表明,化合物(3)中半乳糖残基的位置使Gly3失去柔性,导致更刚性的折叠构象。这种构象变化可能与(2)和(3)之间的止痛活性不同有关。

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