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Structure and dynamics of a nanodisc by integrating NMR SAXS and SANS experiments with molecular dynamics simulations

机译:用分子动力学模拟整合NMRSAXS和SANS实验纳米DISC的结构和动力学

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摘要

Nanodiscs are membrane mimetics that consist of a protein belt surrounding a lipid bilayer, and are broadly used for characterization of membrane proteins. Here, we investigate the structure, dynamics and biophysical properties of two small nanodiscs, MSP1D1ΔH5 and ΔH4H5. We combine our SAXS and SANS experiments with molecular dynamics simulations and previously obtained NMR and EPR data to derive and validate a conformational ensemble that represents the structure and dynamics of the nanodisc. We find that it displays conformational heterogeneity with various elliptical shapes, and with substantial differences in lipid ordering in the centre and rim of the discs. Together, our results reconcile previous apparently conflicting observations about the shape of nanodiscs, and pave the way for future integrative studies of larger complex systems such as membrane proteins embedded in nanodiscs.
机译:Nanodiscs是膜模拟物,其包括围绕脂质双层的蛋白质带,并且广泛用于膜蛋白的表征。在这里,我们研究了两个小纳米DISC,MSP1D1ΔH5和ΔH4H5的结构,动态和生物物理性质。我们将SAXS和SANS实验与分子动力学模拟结合起来,并以前获得的NMR和EPR数据来导出和验证代表纳米尼卡塞姆的结构和动态的构象集合。我们发现它显示了各种椭圆形状的构象异质性,并且在光盘的中心和边缘中的脂质排序具有显着差异。我们的结果与纳米DISCS的形状调和了以前显而易见的观察,并为未来的较大复杂系统的综合性研究铺平了诸如纳米DISC中的膜蛋白的未来综合研究。

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