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Rotation of lipids in membranes: molecular dynamics simulation, 31P spin-lattice relaxation, and rigid-body dynamics.

机译:膜中脂质的旋转:分子动力学模拟,31P自旋晶格弛豫和刚体动力学。

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Molecular dynamics simulations and (31)P-NMR spin-lattice (R(1)) relaxation rates from 0.022 to 21.1 T of fluid phase dipalmitoylphosphatidylcholine bilayers are compared. Agreement between experiment and direct prediction from simulation indicates that the dominant slow relaxation (correlation) times of the dipolar and chemical shift anisotropy spin-lattice relaxation are approximately 10 ns and 3 ns, respectively. Overall reorientation of the lipid body, consisting of the phosphorus, glycerol, and acyl chains, is well described within a rigid-body model. Wobble, with D(perpendicular)= 1-2 x 10(8) s(-1), is the primary component of the 10 ns relaxation; this timescale is consistent with the tumbling of a lipid-sized cylinder in a medium with the viscosity of liquid hexadecane. The value for D(parallel), the diffusion constant for rotation about the long axis of the lipid body, is difficult to determine precisely because of averaging by fast motions and wobble; it is tentatively estimated to be 1 x 10(7) s(-1). The resulting D(parallel)/D( perpendicular) approximately 0.1 implies that axial rotation is strongly modulated by interactions at the lipid/water interface. Rigid-body modeling and potential of mean force evaluations show that the choline group is relatively uncoupled from the rest of the lipid. This is consistent with the ratio of chemical shift anisotropy and dipolar correlation times reported here and the previous observations that (31)P-NMR lineshapes are axially symmetric even in the gel phase of dipalmitoylphosphatidylcholine.
机译:比较了分子动力学模拟和(22)P-NMR自旋晶格(R(1))弛豫速率从液相二棕榈酰磷脂酰胆碱双层的0.022到21.1T。实验与模拟的直接预测之间的一致性表明,偶极子和化学位移各向异性自旋晶格弛豫的主要慢弛豫(相关)时间分别约为10 ns和3 ns。刚性体模型中很好地描述了由磷,甘油和酰基链组成的脂质体的整体重新定向。 D(垂直)= 1-2 x 10(8)s(-1)的摆动是10 ns弛豫的主要成分;此时间范围与脂质大小的圆柱体在液体十六烷粘度的介质中翻滚相一致。 D(parallel)的值,即围绕脂质体长轴旋转的扩散常数,由于快速运动和摆动的平均而很难精确确定。临时估计为1 x 10(7)s(-1)。所得的D(平行)/ D(垂直)大约为0.1表示轴向旋转受到脂质/水界面相互作用的强烈调节。刚体建模和平均力评估的潜力表明,胆碱基团与其余的脂质相对不偶联。这与此处报道的化学位移各向异性和偶极相关时间之比以及以前的观察结果一致,即使在二棕榈酰磷脂酰胆碱的凝胶相中,(31)P-NMR线形也是轴向对称的。

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