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固态核磁共振光谱揭示表没食子儿茶素没食子酸酯与磷脂膜的相互作用

Interaction of epicatechin gallate with phospholipid membranes as revealed by solid-state NMR spectroscopy.

作者信息

Uekusa Yoshinori, Kamihira-Ishijima Miya, Sugimoto Osamu, Ishii Takeshi, Kumazawa Shigenori, Nakamura Kozo, Tanji Ken-ichi, Naito Akira, Nakayama Tsutomu

机构信息

Department of Food and Nutritional Sciences and Global COE Program, University of Shizuoka, 52-1 Yada, Suruga-ku, Shizuoka 422-8526, Japan.

出版信息

Biochim Biophys Acta. 2011 Jun;1808(6):1654-60. doi: 10.1016/j.bbamem.2011.02.014. Epub 2011 Feb 23.

Abstract

Epicatechin gallate (ECg), a green tea polyphenol, has various physiological effects. Our previous nuclear Overhauser effect spectroscopy (NOESY) study using solution NMR spectroscopy demonstrated that ECg strongly interacts with the surface of phospholipid bilayers. However, the dynamic behavior of ECg in the phospholipid bilayers has not been clarified, especially the dynamics and molecular arrangement of the galloyl moiety, which supposedly has an important interactive role. In this study, we synthesized [13C]-ECg, in which the carbonyl carbon of the galloyl moiety was labeled by 13C isotope, and analyzed it by solid-state NMR spectroscopy. Solid-state 31P NMR analysis indicated that ECg changes the gel-to-liquid-crystalline phase transition temperature of DMPC bilayers as well as the dynamics and mobility of the phospholipids. In the solid-state 13C NMR analysis under static conditions, the carbonyl carbon signal of the [13C]-ECg exhibited an axially symmetric powder pattern. This indicates that the ECg molecules rotate about an axis tilting at a constant angle to the bilayer normal. The accurate intermolecular-interatomic distance between the labeled carbonyl carbon of [13C]-ECg and the phosphorus of the phospholipid was determined to be 5.3±0.1 Å by 13C-(31)P rotational echo double resonance (REDOR) measurements. These results suggest that the galloyl moiety contributes to increasing the hydrophobicity of catechin molecules, and consequently to high affinity of galloyl-type catechins for phospholipid membranes, as well as to stabilization of catechin molecules in the phospholipid membranes by cation-π interaction between the galloyl ring and quaternary amine of the phospholipid head-group.

摘要

表没食子儿茶素没食子酸酯(ECg)是一种绿茶多酚,具有多种生理效应。我们之前使用溶液核磁共振光谱进行的核Overhauser效应光谱(NOESY)研究表明,ECg与磷脂双层表面有强烈相互作用。然而,ECg在磷脂双层中的动态行为尚未阐明,尤其是没食子酰基部分的动力学和分子排列,据推测该部分具有重要的相互作用作用。在本研究中,我们合成了[13C]-ECg,其中没食子酰基部分的羰基碳用13C同位素标记,并通过固态核磁共振光谱进行分析。固态31P核磁共振分析表明,ECg改变了二肉豆蔻酰磷脂酰胆碱(DMPC)双层的凝胶-液晶相变温度以及磷脂的动力学和流动性。在静态条件下的固态13C核磁共振分析中,[13C]-ECg的羰基碳信号呈现出轴对称粉末图案。这表明ECg分子围绕与双层法线成恒定角度倾斜的轴旋转。通过13C-(31)P旋转回波双共振(REDOR)测量,确定[13C]-ECg标记的羰基碳与磷脂磷之间的准确分子间原子距离为5.3±0.1 Å。这些结果表明,没食子酰基部分有助于增加儿茶素分子的疏水性,从而导致没食子酰基型儿茶素对磷脂膜具有高亲和力,以及通过没食子酰基环与磷脂头部基团季铵之间的阳离子-π相互作用使儿茶素分子在磷脂膜中稳定。

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