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Modified lipid and protein dynamics in nanodiscs

机译:纳米光盘中脂质和蛋白质动力学的改变

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摘要

For membrane protein studies, nanodiscs have been shown to hold great potential in terms of preparing soluble samples while maintaining a lipid environment. Here, we describe the differences in lipid order and protein dynamics in MSP1 nanodiscs compared to lamellar preparations by solid-state NMR. For DMPC, an increase of the dipolar C-H lipid acyl chain order parameters in nanodiscs is observed in both gel- and liquid crystalline phases. Incorporating proteorhodopsin in these nanodiscs resulted in a significantly longer rotating frame spin-lattice relaxation time for 13C leerzeichen and better cross polarisation efficiency due to restricted protein dynamics. A comparison of 13C-13C correlation spectra revealed no structural differences. The incorporation of proteorhodopsin into nanodiscs has been optimised with respect to detergent and to protein/scaffold protein/lipid stoichiometries. Its functional state was probed by time-resolved optical spectroscopy revealing only minor differences between lamellar and nanodisc preparations. Our observations show remarkable dynamic effects between membrane proteins, lipids and scaffold protein. The potential use of nanodiscs for solid-state NMR applications is discussed. ? 2012 Elsevier B.V. All rights reserved.
机译:对于膜蛋白研究,在保持脂类环境的同时,制备可溶性样品方面显示出纳米盘具有巨大潜力。在这里,我们通过固态NMR描述了与片状制剂相比MSP1纳米盘中脂质顺序和蛋白质动力学的差异。对于DMPC,在凝胶相和液晶相中均观察到纳米光盘中偶极C-H脂质酰基链顺序参数的增加。将蛋白视紫红质掺入这些纳米光盘中会导致13C leerzeichen的旋转框架自旋晶格弛豫时间明显更长,并且由于受限的蛋白质动力学而导致更好的交叉极化效率。 13C-13C相关光谱的比较显示没有结构差异。关于去污剂和蛋白质/支架蛋白质/脂质化学计量,已经将蛋白视紫红质掺入纳米盘中进行了优化。通过时间分辨光谱法探测其功能状态,发现层状和纳米光盘制品之间只有很小的差异。我们的观察结果表明,膜蛋白,脂质和支架蛋白之间具有显着的动力学作用。讨论了纳米盘在固态NMR应用中的潜在用途。 ? 2012 Elsevier B.V.保留所有权利。

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