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血管活性肠肽药效团的构效关系研究。1. 酪氨酸类似物。

Structure-activity studies on the vasoactive intestinal peptide pharmacophore. 1. Analogs of tyrosine.

作者信息

Bolin D R, Cottrell J, Garippa R, Michalewsky J, Rinaldi N, Simko B, O'Donnell M

机构信息

Roche Research Center, Hoffmann-La Roche, Inc., Nutley, New Jersey, USA.

出版信息

Int J Pept Protein Res. 1995 Sep-Oct;46(3-4):279-89. doi: 10.1111/j.1399-3011.1995.tb00599.x.

Abstract

From previous work, the primary functional groups, i.e. side chains, of the vasoactive intestinal peptide which are responsible for interaction with the VIP receptor have been identified. One of these sites, the side chain of tyrosine22 is essential for high receptor affinity. The present work aims to examine this site in greater detail. Several Boc-substituted-phenylalanine derivatives were prepared and incorporated into VIP analogs as replacement for tyrosine22. These analogs, of the form Ac-[Lys12,Nle17,X22,Val26,Thr28]-VIP, were assayed as smooth muscle relaxants and found to be full agonists of native VIP. Most of the analogs, however, proved to be less potent than the parent analog by up to 300-fold. A few analogs, all possessing electron-donating substituents, retained nearly full potency. Two compounds, 3-F,4-OH-Phe, 42 and 3-OCH3,4-OH-Phe, 43, were found to be 1.5- and 3.4-fold more potent than the parent compound, which equates to being 8.9- and 20-fold more potent than native VIP. Compound 43 was also found to be active as a bronchodilator in vivo in guinea pigs, with slightly over 2-fold enhanced potency and a significantly longer duration of action (> 20 min) when compared to the parent compound (5 min). The physical characteristics of the various substituents and their effect on biological activity are discussed with a brief analysis by QSAR techniques.

摘要

根据之前的研究工作,已确定了血管活性肠肽中负责与VIP受体相互作用的主要官能团,即侧链。其中一个位点,酪氨酸22的侧链对于高受体亲和力至关重要。本研究旨在更详细地研究该位点。制备了几种Boc取代的苯丙氨酸衍生物,并将其掺入VIP类似物中以取代酪氨酸22。这些形式为Ac-[Lys12,Nle17,X22,Val26,Thr28]-VIP的类似物作为平滑肌松弛剂进行了测定,结果发现它们是天然VIP的完全激动剂。然而,大多数类似物的效力比母体类似物低达300倍。一些类似物,均具有供电子取代基,保留了几乎完全的效力。发现两种化合物,3-F,4-OH-Phe,42和3-OCH3,4-OH-Phe,43,比母体化合物的效力分别高1.5倍和3.4倍,这相当于比天然VIP的效力高8.9倍和20倍。还发现化合物43在豚鼠体内作为支气管扩张剂具有活性,与母体化合物(5分钟)相比,效力略有增强超过2倍,作用持续时间明显更长(>20分钟)。通过QSAR技术进行简要分析,讨论了各种取代基的物理特性及其对生物活性的影响。

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