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首页> 外文期刊>Biophysical Journal >Cholesterol-Induced Conformational Change in the Sphingomyelin Headgroup
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Cholesterol-Induced Conformational Change in the Sphingomyelin Headgroup

机译:磷酸胆固醇诱导的鞘鞘蛋白头组的构象变化

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摘要

Sphingomyelin (SM) and cholesterol (Cho) are the important lipids for the formation of biologically functional membrane domains, lipid rafts. However, the interaction between Cho and the headgroup of SM remains unclear. In this study, we performed solid-state NMR experiments to reveal the Cho effects on the headgroup conformation using( 2)H-labeled stearoyl-SM (SSM). Deuterated SSMs at the C alpha, C beta, and C gamma positions of a choline moiety were separately prepared and subjected to NMR measurements to determine the quadrupolar splitting of H-2 signals in hydrated SSM unitary and SSM/Cho (1:1) bilayers. Using H-2 NMR and( 13)C-P-31 REDOR data, the conformation and orientation of the choline moiety were deduced and compared with those derived from molecular dynamics simulations. In SSM unitary bilayers, three torsional angles in the phosphocholine moiety, P-O-C alpha-C beta, were found to be consecutive +gauche(g)/+g/+g or -g/-g/-g. The orientation and conformation of the SSM headgroup were consistent with the results of our molecular dynamics simulations and the previous results on phosphatidylcholines. The quadrupolar coupling at the alpha methylene group slightly increased in the presence of Cho, and those at the C beta and C gamma decreased more significantly, thus suggesting that Cho reduced the gauche conformation at the C alpha-C beta torsion. The conformational ensemble in the presence of Cho may enhance the so-called umbrella effect of the SSM headgroup, resulting in the stabilization of Cho near the SM molecules by concealing the hydrophobic Cho core from interfacial water. We also examined the effect of the chiral centers at the sphingosine chain to the headgroup conformation by determining the enantiomeric excess between the diastereomeric +g/+g/+g and -g/-g/-g conformers using (S)-C alpha-deuterated and (R)-C alpha-deuterated SSMs. Their H-2 NMR measurements showed that the chiral centers induced the slight diastereomeric excess in the SM headgroup conformation.
机译:Spingomyelin(SM)和胆固醇(CHO)是形成生物功能膜结构域,脂质筏的重要脂质。然而,CHO与SM的头组之间的相互作用仍不清楚。在这项研究中,我们进行了固态的NMR实验,以揭示使用(2)H标记的硬脂酰-M(SSM)对头组构象的CHO效应。在Cα,Cβ和C胆碱部分的CγSMS的氘代SSM分别制备并进行NMR测量以确定水合SSM单一和SSM / CHO(1:1)双层中的H-2信号的四极散分裂。使用H-2 NMR和(13)C-P-31 Redor数据,推导出胆碱部分的构象和取向,并与来自分子动力学模拟的那些进行比较。在SSM酉双层中,发现磷光啉部分,P-O-Cα-Cβ的三个扭转角度是连续的+ Gauche(g)/ + g / + g或-g / -g / -g。 SSM头组的取向和构象与我们的分子动力学模拟的结果一致,并在磷脂酰胆碱上的先前结果。在CHO的存在下,α亚甲基的Quadrupolar偶联在CHO存在下略微增加,并且Cβ和Cγ的那些更显着地降低,因此表明CHO降低了Cα-Cβ扭转的Gauche构象。 CHO存在的构象集合可以增强SSM头组的所谓的伞形效应,导致通过隐藏来自界面水的疏水CHO核心,导致SM分子附近的CHO稳定。我们还通过使用(s)-cα的αc/ -g / -g符合特式在氨基次+ g / + g / + g和-g / -g / -g / -g / -g / -g符合子之间进行对鞘氨酸链的手性中心对头孢粒组构象的影响。使用(s)-cα - 被调入和(R)-Cα-氘代的SSM。他们的H-2 NMR测量表明,手性中心在SM头组符合中诱导了轻微的非对映异构体积。

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  • 来源
    《Biophysical Journal》 |2019年第2期|共12页
  • 作者单位

    Osaka Univ Grad Sch Sci Japan Sci &

    Technol Agcy Dept Chem Osaka Japan;

    Osaka Univ Grad Sch Sci Japan Sci &

    Technol Agcy Dept Chem Osaka Japan;

    Osaka Univ Grad Sch Sci Japan Sci &

    Technol Agcy Dept Chem Osaka Japan;

    Osaka Univ Grad Sch Sci Japan Sci &

    Technol Agcy Dept Chem Osaka Japan;

    Osaka Univ Grad Sch Sci Japan Sci &

    Technol Agcy Dept Chem Osaka Japan;

    Osaka Univ Grad Sch Sci Japan Sci &

    Technol Agcy Dept Chem Osaka Japan;

    Osaka Univ Grad Sch Sci Japan Sci &

    Technol Agcy Dept Chem Osaka Japan;

    Nagoya Univ Dept Mat Chem Nagoya Aichi Japan;

    Nagoya Univ Dept Mat Chem Nagoya Aichi Japan;

    Osaka Univ Grad Sch Sci Japan Sci &

    Technol Agcy Dept Chem Osaka Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
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