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黑素细胞刺激素肽与黑素皮质素受体hMC1R异常解离特性的表征。

Characterizations of the unusual dissociation properties of melanotropin peptides from the melanocortin receptor, hMC1R.

作者信息

Haskell-Luevano C, Miwa H, Dickinson C, Hadley M E, Hruby V J, Yamada T, Gantz I

机构信息

Department of Chemistry, University of Arizona, Tucson 85721, USA.

出版信息

J Med Chem. 1996 Jan 19;39(2):432-5. doi: 10.1021/jm950407s.

Abstract

Variation in the degree of prolonged (residual) biological activity of the melanotropin peptides alpha-MSH (alpha-melanocyte-stimulating hormone, Ac-Ser-Tyr-Met-Glu- His-Phe-Arg-Trp-Gly-Lys-Pro-Val-NH2) and the superpotent analogues [Nle4,DPhe7]alpha-MSH (MT-I) and Ac-[Nle4,Asp5,DPhe7,Lys10]alpha-MSH(4-10-NH2 (MT-II) has stimulated considerable interest regarding this biological phenomena. We have examined the differences in their relative dissociation rates from the melanocortin receptor, hMC1R, to try and correlate peptide dissociation rates with the observations of prolonged biological activity. Interestingly, these studies revealed that alpha-MSH remained 25% bound, MT-I 65% bound, and MT-II 86% bound 6 h after the ligand had been removed from the assay medium. The relative dissociation rate of MT-II was 4 times slower than that for alpha-MSH and 2 times slower than that for MT-I, which was 2 times slower than that for alpha-MSH. These data suggest that slow dissociation kinetics (hours) may contribute to the prolonged biological activities observed for both MT-I and MT-II peptides in vitro and in vivo. The prolonged binding, biological activities, and enzymatic stability of MT-I and MT-II make them putative candidates for clinical uses such as external scintigraphy for the localization of tumors (i.e., melanoma).

摘要

促黑素肽α-MSH(α-黑素细胞刺激素,Ac-Ser-Tyr-Met-Glu-His-Phe-Arg-Trp-Gly-Lys-Pro-Val-NH2)以及超强类似物[Nle4,DPhe7]α-MSH(MT-I)和Ac-[Nle4,Asp5,DPhe7,Lys10]α-MSH(4-10-NH2 (MT-II) 的延长(残留)生物活性程度的差异,引发了人们对这一生物学现象的极大兴趣。我们研究了它们从黑素皮质素受体hMC1R的相对解离速率差异,试图将肽的解离速率与延长生物活性的观察结果关联起来。有趣的是,这些研究表明,在从测定培养基中去除配体6小时后,α-MSH仍有25%结合,MT-I有65%结合,MT-II有86%结合。MT-II的相对解离速率比α-MSH慢4倍,比MT-I慢2倍,而MT-I比α-MSH慢2倍。这些数据表明,缓慢的解离动力学(数小时)可能导致在体外和体内观察到的MT-I和MT-II肽的生物活性延长。MT-I和MT-II延长的结合、生物活性和酶稳定性使其成为临床应用(如肿瘤(即黑色素瘤)定位的外部闪烁显像)的潜在候选物。

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