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双环α-促黑素细胞激素类似物的设计、合成、生物学特性及构象

Design, synthesis, biology, and conformations of bicyclic alpha-melanotropin analogues.

作者信息

Haskell-Luevano C, Shenderovich M D, Sharma S D, Nikiforovich G V, Hadley M E, Hruby V J

机构信息

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

出版信息

J Med Chem. 1995 May 12;38(10):1736-50. doi: 10.1021/jm00010a018.

Abstract

Seven side chain-constrained bicyclic alpha-melanotropin (alpha-MSH) analogues were designed and synthesized, their conformations analyzed, and their biological properties examined in the frog skin and lizard skin bioassays. The structure of these analogues is based on the central sequence Ac-Cys4-Xaa5-His6-DPhe7-Arg8-Trp9-Cys10-Lys11 -NH2 (Xaa5 = Asp or Glu) and has been extended on the N-terminal with the amino acids Ser1-Tyr2-Ser3 and on the C-terminal with Pro12-Val13 to more closely resemble the native hormone alpha-MSH. The analogue Ac-Cys4-Asp5-His6-DPhe7-Arg8-Trp9-Lys10-Cys11 -NH2 also was synthesized, and its conformational and biological properties were examined. Design of these analogues was based upon the previously identified superpotent monocyclic peptides [Cys4,DPhe7,Cys10]alpha-MSH(4-10)-NH2 and [Nle4,Asp5,DPhe7,Lys10]alpha-MSH(4-10)-NH2 with the rationale of increasing conformational constraints to restrict the available backbone conformations as a means to identify the conformations that facilitate biological activity. Computer-assisted conformational analysis of the central tetrapeptide residues 6-9 identified beta-turns which varied with respect to the residue in the i + 1 position. Each highly constrained peptide contains D-Phe7 and a 23-membered ring which has previously been identified as crucial to produce prolonged acting peptides with superagonistic activities. The bicyclic peptides reported in this study are full agonists and are 25-400-fold less potent than alpha-MSH in the frog and lizard skin bioassays.

摘要

设计并合成了七种侧链受限的双环α-促黑素(α-MSH)类似物,分析了它们的构象,并在蛙皮和蜥蜴皮生物测定中检测了它们的生物学特性。这些类似物的结构基于中心序列Ac-Cys4-Xaa5-His6-DPhe7-Arg8-Trp9-Cys10-Lys11 -NH2(Xaa5 = Asp或Glu),并在N端用氨基酸Ser1-Tyr2-Ser3进行了延伸,在C端用Pro12-Val13进行了延伸,以更接近天然激素α-MSH。还合成了类似物Ac-Cys4-Asp5-His6-DPhe7-Arg8-Trp9-Lys10-Cys11 -NH2,并检测了其构象和生物学特性。这些类似物的设计基于先前鉴定的超强效单环肽[Cys4,DPhe7,Cys10]α-MSH(4-10)-NH2和[Nle4,Asp5,DPhe7,Lys10]α-MSH(4-10)-NH2,其原理是增加构象限制以限制可用的主链构象,作为识别促进生物活性的构象的一种手段。对中心四肽残基6-9的计算机辅助构象分析确定了β-转角,其随i + 1位置的残基而变化。每个高度受限的肽都含有D-Phe7和一个23元环,先前已确定该环对于产生具有超级激动活性的长效肽至关重要。本研究报道的双环肽是完全激动剂,在蛙皮和蜥蜴皮生物测定中比α-MSH的效力低25-400倍。

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