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血管活性肠肽(VIP)的结构-活性研究:环二硫类似物

Structure-activity studies of vasoactive intestinal peptide (VIP): cyclic disulfide analogs.

作者信息

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

机构信息

Department of Peptide Research, Hoffmann-La Roche Inc., Nutley.

出版信息

Int J Pept Protein Res. 1993 Feb;41(2):124-32. doi: 10.1111/j.1399-3011.1993.tb00122.x.

Abstract

Analogs of vasoactive intestinal peptide with cysteine residues incorporated at selected sites within the sequence were prepared by solid phase methods, oxidized to the corresponding cyclic disulfides and purified to homogeneity by preparative HPLC. The cyclic compounds were assayed as smooth muscle relaxants on isolated guinea pig trachea, as bronchodilators in vivo in guinea pigs, and for binding to VIP receptors in guinea pig lung membranes. Of the analogs prepared at the N-terminus, one compound, Ac-[D-Cys6,D-Cys11,Lys12,Nle17,Val26,Th r28]-VIP, was found to be a full agonist with slightly more than one tenth the potency of native VIP. Most other cyclic analogs in the N-terminal region were found to be inactive. A second analog, Ac-[Lys12,Cys17,Val26,Cys28]-VIP, was also found to be a full agonist with potency about one third that of native VIP. Furthermore, this compound was active as a bronchodilator in vivo in guinea pig, but with somewhat diminished potency as compared to native VIP. Strikingly, this cyclic compound was found to have significantly longer duration of action (> 40 min) when compared to an analogous acyclic compound (5 min). The conformational restrictions imposed by formation of the cyclic ring structures may have stabilized the molecule to degradation, thus enhancing the effective duration of action. Analysis of this series of cyclic analogs has also yielded information about the requirements for the receptor-active conformation of VIP.

摘要

通过固相方法制备了在序列内选定位置掺入半胱氨酸残基的血管活性肠肽类似物,将其氧化为相应的环二硫化物,并通过制备型高效液相色谱法纯化至同质。对这些环状化合物进行了检测,作为对分离的豚鼠气管平滑肌的松弛剂、豚鼠体内的支气管扩张剂以及与豚鼠肺膜中VIP受体的结合剂。在N端制备的类似物中,一种化合物Ac-[D-Cys6,D-Cys11,Lys12,Nle17,Val26,Thr28]-VIP被发现是一种完全激动剂,其效力略高于天然VIP的十分之一。N端区域的大多数其他环状类似物被发现无活性。第二种类似物Ac-[Lys12,Cys17,Val26,Cys28]-VIP也被发现是一种完全激动剂,效力约为天然VIP的三分之一。此外,该化合物在豚鼠体内作为支气管扩张剂有活性,但与天然VIP相比效力有所降低。令人惊讶的是,与类似的无环化合物(5分钟)相比,该环状化合物的作用持续时间显著更长(>40分钟)。环结构形成所施加的构象限制可能使分子对降解更稳定,从而延长了有效作用持续时间。对这一系列环状类似物的分析也得出了关于VIP受体活性构象要求的信息。

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