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血管活性肠肽16γ-谷氨酰二氨基衍生物中的正电荷对人血管活性肠肽1型受体(hVPAC1)和人血管活性肠肽2型受体(hVPAC2)功能的影响

Effect of positive charge in VIP 16gamma-glutamyl diamino derivatives on hVPAC1 and hVPAC2 receptor function.

作者信息

de Maria Salvatore, Metafora Vittoria, Metafora Salvatore, Ravagnan Gianpietro, Cartení Maria, Pontoni Gabriele, Facchiano Angelo, Lepretti Marilena, Severino Beatrice, Caliendo Giuseppe, Santagada Vincenzo, Langer Ingrid, Robberecht Patrick

机构信息

Department of Experimental Medicine, Medical School, II University of Naples, Via Costantinopoli 16, 80138, Naples, Italy.

出版信息

J Pept Sci. 2008 Jan;14(1):102-9. doi: 10.1002/psc.925.

Abstract

Increase of VPAC receptor s binding to the (16)gamma-glutamyl diaminopropane vasoactive intestinal peptide (VIP-DAP) agonist, a vasoactive intestinal polypeptide (VIP) structural analogue containing a positive charge at position 16, has confirmed the importance of a positive charge at this site. By investigating the effect of distance from the peptide backbone Calpha of a positive charge in position 16, data are reported here concerning: (i) a novel chemical method used for the synthesis of a new family of (16)gamma-glutamyl diamine VIP derivatives differing among them for single carbon atoms and including diaminoethane (VIP-DAE2), diaminopropane (VIP-DAP3), diaminobutane (VIP-DAB4), diaminopentane (VIP-DAP5), and diaminohexane (VIP-DAH6); (ii) functional characterization of these compounds on human VPAC1 and VPAC2 receptors. In more detail, the EC50 and IC50 values, when measured as a function of the alkylic chain length, show in more detail, that the use of VIP-DAB4 derivative changes the IC50 but not the EC50, thus indicating on hVPAC2 receptor an unexpected relationship between binding and activity that differs from that obtained on hVPAC1.

摘要

血管活性肠肽(VIP)受体与(16)γ-谷氨酰二氨基丙烷血管活性肠肽(VIP-DAP)激动剂(一种在第16位带有正电荷的血管活性肠肽(VIP)结构类似物)结合的增加,证实了该位点正电荷的重要性。通过研究第16位正电荷与肽主链α碳原子之间距离的影响,本文报告了以下数据:(i)一种用于合成新的(16)γ-谷氨酰二胺VIP衍生物家族的新化学方法,这些衍生物之间相差单个碳原子,包括二氨基乙烷(VIP-DAE2)、二氨基丙烷(VIP-DAP3)、二氨基丁烷(VIP-DAB4)、二氨基戊烷(VIP-DAP5)和二氨基己烷(VIP-DAH6);(ii)这些化合物对人VPAC1和VPAC2受体的功能表征。更详细地说,当作为烷基链长度的函数测量时,EC50和IC50值更详细地表明,使用VIP-DAB4衍生物会改变IC50但不会改变EC50,从而表明在hVPAC2受体上,结合与活性之间存在与在hVPAC1上获得的不同的意外关系。

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