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强啡肽A-(1-10)与κ-阿片受体细胞外环2结合的分子模拟。受体激活模型。

Molecular simulation of dynorphin A-(1-10) binding to extracellular loop 2 of the kappa-opioid receptor. A model for receptor activation.

作者信息

Paterlini G, Portoghese P S, Ferguson D M

机构信息

Department of Medicinal Chemistry and Minnesota Supercomputer Institute, University of Minnesota, Minneapolis 55455, USA.

出版信息

J Med Chem. 1997 Sep 26;40(20):3254-62. doi: 10.1021/jm970252j.

Abstract

The structure of the second extracellular loop region (EL2) of the kappa-opioid receptor has been explored in an effort to understand the structural basis for dynorphin A binding and selectivity. Application of secondary structure prediction methods and homology modeling resulted in a turn-helix motif for the N-terminal region of kappa-EL2. A similar motif was not predicted for EL2 of either delta or mu opioid receptors. The EL2 helix was further shown to be amphiphilic and complementary to the helical component of dynorphin A. Using a model of the kappa-receptor (Metzger et al. Neurochem. Res. 1996, 21, 1287-1294), including the newly predicted EL2 turn-helix domain, a binding mode is proposed based on helix--helix interactions between hydrophobic residues of EL2 and the helical component of dynorphin A-(1-10). Molecular simulations of the receptor--ligand complex yielded structures in which the tyramine moiety or opioid "message" of dynorphin is bound within a conserved aromatic pocket in the transmembrane domain while the helical portion contacted residues in EL2 and in the extracellular end of transmembrane helices 6 and 7. The model is in general agreement with site-directed mutagenesis data and chimera studies that have identified binding domains in both the EL2 and transmembrane regions of dynorphin A. The results confirm the importance of the opioid "message" displayed by many opioid ligands but also suggest a potential mechanism of receptor activation that may be mediated by EL2 through interactions with the "address" component of dynorphin A.

摘要

为了理解强啡肽A结合和选择性的结构基础,人们对κ-阿片受体的第二个细胞外环区域(EL2)的结构进行了探索。二级结构预测方法和同源建模的应用得出了κ-EL2 N端区域的一个转角-螺旋基序。δ或μ阿片受体的EL2未预测到类似基序。进一步研究表明,EL2螺旋具有两亲性,且与强啡肽A的螺旋成分互补。利用κ-受体模型(Metzger等人,《神经化学研究》,1996年,21卷,1287 - 1294页),包括新预测的EL2转角-螺旋结构域,基于EL2的疏水残基与强啡肽A-(1 - 10)的螺旋成分之间的螺旋-螺旋相互作用,提出了一种结合模式。受体-配体复合物的分子模拟产生了这样的结构:强啡肽的酪胺部分或阿片“信息”结合在跨膜结构域的一个保守芳香口袋内,而螺旋部分与EL2以及跨膜螺旋6和7细胞外端的残基接触。该模型总体上与定点诱变数据和嵌合体研究一致,这些研究已确定了强啡肽A的EL2和跨膜区域中的结合结构域。结果证实了许多阿片配体所显示的阿片“信息”的重要性,但也提出了一种受体激活的潜在机制,该机制可能由EL2通过与强啡肽A的“地址”成分相互作用来介导。

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