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四种以γ-转角模拟物取代氨基酸残基3-5的血管紧张素II受体配体的设计、合成及生物活性

Design, synthesis, and biological activities of four angiotensin II receptor ligands with gamma-turn mimetics replacing amino acid residues 3-5.

作者信息

Schmidt B, Lindman S, Tong W, Lindeberg G, Gogoll A, Lai Z, Thörnwall M, Synnergren B, Nilsson A, Welch C J, Sohtell M, Westerlund C, Nyberg F, Karlén A, Hallberg A

机构信息

Department of Organic Pharmaceutical Chemistry, Uppsala University, Sweden.

出版信息

J Med Chem. 1997 Mar 14;40(6):903-19. doi: 10.1021/jm960553d.

DOI:10.1021/jm960553d
PMID:9083479
Abstract

Disulfide cyclization is a powerful method for reducing the conformational space of a peptide. This in turn may enable the study of its bioactive conformation. Several analogues of angiotensin II (Ang II) containing a disulfide bridge between amino acids 3 and 5 have been reported. Among these the cyclic octapeptides c[Hcy3,5]-Ang II, c[Cys3,5]-Ang II, and c[Pen 3,5]-Ang II showed significant activity at Ang II receptors. We have performed conformational analysis studies using theoretical calculations and 1H-NMR spectroscopy on tripeptide model compounds of these cyclic octapeptides which show that the cyclic moieties of c[Cys3,5]-Ang II and c[Pen3,5]-Ang II preferentially assume an inverse gamma-turn conformation. On the basis of these results, we substituted amino acid residues 3-5 in Ang II with two different gamma-turn mimetics giving four diastereomeric Ang II analogues. Interestingly, two of these are equipotent to Ang II in binding to AT1 receptors. In the contractile test using rabbit aorta rings, one of the analogues is an agonist with full contractile activity approximately equipotent to c[Pen3,5]-Ang II but 300-fold less potent than Ang II. This low potency may suggest that Ang II does not adopt a gamma-turn in the 3-5 region when interacting with the receptor.

摘要

二硫键环化是一种减少肽构象空间的有效方法。这反过来可能有助于研究其生物活性构象。已经报道了几种在氨基酸3和5之间含有二硫键的血管紧张素II(Ang II)类似物。其中,环八肽c[Hcy3,5]-Ang II、c[Cys3,5]-Ang II和c[Pen 3,5]-Ang II在Ang II受体上显示出显著活性。我们使用理论计算和1H-NMR光谱对这些环八肽的三肽模型化合物进行了构象分析研究,结果表明c[Cys3,5]-Ang II和c[Pen3,5]-Ang II的环部分优先呈现反γ-转角构象。基于这些结果,我们用两种不同的γ-转角模拟物取代了Ang II中的氨基酸残基3-5,得到了四种非对映异构的Ang II类似物。有趣的是,其中两种在与AT1受体结合方面与Ang II具有同等效力。在使用兔主动脉环的收缩试验中,其中一种类似物是一种激动剂,具有与c[Pen3,5]-Ang II大致相当的完全收缩活性,但效力比Ang II低300倍。这种低效可能表明Ang II在与受体相互作用时在3-5区域不采用γ-转角构象。

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