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与二棕榈酰磷脂酰胆碱(DPC)胶束结合的神经激肽-3受体选择性肽激动剂鲨鳐素II的结构表征

Structural characterization of neurokinin-3 receptor selective peptide agonist scyliorhinin II bound to DPC micelles.

作者信息

Dike Anjali, Cowsik Sudha M

机构信息

School of Life Sciences, Jawaharlal Nehru University, New Delhi-110067, India.

出版信息

J Biomol Struct Dyn. 2008 Feb;25(4):395-405. doi: 10.1080/07391102.2008.10507188.

Abstract

Scyliorhinin II, a cyclic Tachykinin peptide, is a potent NK3 receptor agonist. The pharmacology of NK3 receptor is least characterized out of the three tachykinin receptor subtypes cloned and characterized for Tachykinins. To understand the structural basis of peptide-receptor interaction, the three-dimensional structure of the Scyliorhinin II in aqueous and micellar environments has been studied by two-dimensional proton nuclear magnetic resonance (2D 1H-NMR spectroscopy) and distance geometry calculations. Proton NMR assignments have been carried out with the aid of correlation spectroscopy (gradient-COSY and TOCSY) and nuclear Overhauser effect spectroscopy (NOESY and ROESY) experiments. The inter proton distances and dihedral angle constraints obtained from the NMR data have been used in torsion angle dynamics algorithm for NMR applications (DYANA) to generate a family of structures, which have been refined using restrained energy minimization and dynamics. The results show that in an aqueous environment, Scyliorhinin II lacks a definite secondary structure. The structure is well-defined in presence of dodecyl phosphocholine micelles. The global fold of Scyliorhinin II bound to DPC micelles consists of a well-defined helix in the C-terminal region from residue 12-18 and a series of turns towards N-terminus. The structure is further stabilized by disulfide bond between Cys7 and Cys13. The conformational range of the peptide revealed by NMR and CD studies has been analyzed in terms of characteristic secondary features. Observed conformational features have been compared with those of Substance P, Neurokinin A and Neurokinin B, potent NK1, NK2, and NK3 agonists, respectively.

摘要

Scyliorhinin II是一种环速激肽肽,是一种有效的NK3受体激动剂。在已克隆和鉴定的三种速激肽受体亚型中,NK3受体的药理学特征了解得最少。为了理解肽-受体相互作用的结构基础,通过二维质子核磁共振(2D 1H-NMR光谱)和距离几何计算研究了Scyliorhinin II在水性和胶束环境中的三维结构。借助相关光谱(梯度-COSY和TOCSY)和核Overhauser效应光谱(NOESY和ROESY)实验进行了质子NMR归属。从NMR数据获得的质子间距离和二面角约束已用于NMR应用的扭转角动力学算法(DYANA)中,以生成一系列结构,并使用受限能量最小化和动力学对其进行了优化。结果表明,在水性环境中,Scyliorhinin II缺乏明确的二级结构。在十二烷基磷酸胆碱胶束存在下,该结构定义明确。与DPC胶束结合的Scyliorhinin II的整体折叠由12-18位残基C末端区域中明确的螺旋和朝向N末端的一系列转角组成。该结构通过Cys7和Cys13之间的二硫键进一步稳定。已根据特征二级特征分析了通过NMR和CD研究揭示的肽的构象范围。已将观察到的构象特征分别与P物质、神经激肽A和神经激肽B(分别为有效的NK1、NK2和NK3激动剂)的构象特征进行了比较。

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