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Membrane-assisted molecular mechanism of neurokinin receptor subtype selection.

机译:膜辅助神经激肽受体亚型选择的分子机制。

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摘要

Based on the observed membrane structures of substance P, physalaemin, and eledoisin, preferred conformations, orientations and accumulations of 13 mammalian neurokinins and non-mammalian tachykinins were estimated and compared with pharmacologic and selective binding data taken from the literature. Principal site affinities and relative affinities supported the view that neurokinins bind to three principal mammalian sites: the NK-1 (preferring substance P), the NK-2 (preferring neurokinin A), and the NK-3 site (preferring neurokinin B). Strong hydrophobic membrane interaction of the C-terminal message segment as a perpendicularly oriented alpha-helical domain correlated with NK-1 selection. Electrostatic accumulation of the peptide at the anionic fixed charge layer of the membrane without hydrophobic interaction through a helix correlated with NK-2 preference. Electrostatic repulsion by the anionic fixed charge layer correlated with NK-3 selection. Thus, neurokinin receptor selection is guided by the same principles as opioid receptor selection. Membrane catalysis of specific agonist--receptor interactions may prove to be a quite general phenomenon, and the membrane structure of a peptide more important for its structure--activity relationship than its crystal structure or its mixture of conformers in solution or in vacuo.
机译:根据观察到的P物质,藻磷脂和eledoisin的膜结构,估算了13种哺乳动物神经激肽和非哺乳动物速激肽的优选构象,方向和积累,并与文献中的药理学和选择性结合数据进行了比较。主要位点亲和力和相对亲和力支持以下观点:神经激肽与三个主要的哺乳动物位点结合:NK-1(首选物质P),NK-2(首选神经激肽A)和NK-3部位(首选神经激肽B)。 C末端消息段作为垂直定向的α螺旋域的强疏水膜相互作用与NK-1选择相关。肽在膜的阴离子固定电荷层上的静电积累,而没有通过螺旋的疏水相互作用,与NK-2优先级相关。阴离子固定电荷层的静电排斥与NK-3的选择有关。因此,神经激肽受体的选择遵循与阿片样物质受体选择相同的原则。特定激动剂-受体相互作用的膜催化可能被证明是一种非常普遍的现象,与溶液或真空中的晶体结构或构象体混合物相比,肽的膜结构对其结构-活性关系更重要。

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