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Ceramide-lipid interactions studied by MD simulations and solid-state NMR

机译:通过MD模拟和固态NMR研究神经酰胺-脂质相互作用

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Ceramides play a key modulatory role in many cellular processes, which results from their effect on the structure and dynamics of biological membranes. In this study, we investigate the influence of C16-ceramide (C16) on the biophysical properties of DMPC lipid bilayers using solid-state NMR and atomistic molecular dynamics (MD) simulations. MD simulations and NMR measurements were carried out for a pure DMPC bilayer and for a 20% DMPC-C16 mixture. Calculated key structural properties, namely area per lipid, chain order parameters, and mass density profiles, indicate that C16 has an ordering effect on the DMPC bilayer. Furthermore, the simulations predict that specific hydrogen-bonds form between DMPC and C16 molecules. Multi-nuclear solid-state NMR was used to verify these theoretical predictions. Chain order parameters extracted from 13C1H dipole couplings were measured for both lipid and ceramide and follow the trend suggested by the MD simulations. Furthermore, 1H-MAS NMR experiments showed a direct contact between ceramide and lipids.
机译:神经酰胺在许多细胞过程中起着关键的调节作用,这是由于它们对生物膜的结构和动力学的影响。在这项研究中,我们使用固态NMR和原子分子动力学(MD)模拟研究C16神经酰胺(C16)对DMPC脂质双层的生物物理特性的影响。对纯DMPC双层和20%DMPC-C16混合物进行MD模拟和NMR测量。计算的关键结构性质,即每个脂质的面积,链序参数和质量密度分布图,表明C16对DMPC双层有序作用。此外,模拟预测在DMPC和C16分子之间会形成特定的氢键。多核固态NMR用于验证这些理论预测。从13C1H偶极偶合中提取的链序参数被测量为脂质和神经酰胺,并遵循MD模拟所建议的趋势。此外,1 H-MAS NMR实验显示神经酰胺和脂质之间直接接触。

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