Soubias O, Jolibois F, Massou S, Milon A, Réat V
Institut de Pharmacologie et de Biologie Structurale, UMR 5089, Toulouse, France.
Biophys J. 2005 Aug;89(2):1120-31. doi: 10.1529/biophysj.105.059857. Epub 2005 May 27.
A new strategy was established to determine the average orientation and dynamics of ergosterol in dimyristoylphosphatidylcholine model membranes. It is based on the analysis of chemical shift anisotropies (CSAs) averaged by the molecular dynamics. Static (13)C CSA tensors were computed by quantum chemistry, using the gauge-including atomic-orbital approach within Hartree-Fock theory. Uniformly (13)C-labeled ergosterol was purified from Pichia pastoris cells grown on labeled methanol. After reconstitution into dimyristoylphosphatidylcholine lipids, the complete (1)H and (13)C assignment of ergosterol's resonances was performed using a combination of magic-angle spinning two-dimensional experiments. Dynamically averaged CSAs were determined by standard side-band intensity analysis for isolated (13)C resonances (C(3) and ethylenic carbons) and by off-magic-angle spinning experiments for other carbons. A set of 18 constraints was thus obtained, from which the sterol's molecular order parameter and average orientation could be precisely defined. The validity of using computed CSAs in this strategy was verified on cholesterol model systems. This new method allowed us to quantify ergosterol's dynamics at three molar ratios: 16 mol % (Ld phase), 30 mol % (Lo phase), and 23 mol % (mixed phases). Contrary to cholesterol, ergosterol's molecular diffusion axis makes an important angle (14 degrees) with the inertial axis of the rigid four-ring system.
建立了一种新策略来确定麦角甾醇在二肉豆蔻酰磷脂酰胆碱模型膜中的平均取向和动力学。它基于对分子动力学平均后的化学位移各向异性(CSA)的分析。静态(13)C CSA张量通过量子化学计算,采用Hartree-Fock理论中的含规范原子轨道方法。从在标记甲醇上生长的毕赤酵母细胞中纯化出均匀(13)C标记的麦角甾醇。在重构到二肉豆蔻酰磷脂酰胆碱脂质中后,使用魔角旋转二维实验的组合对麦角甾醇共振的完整(1)H和(13)C归属进行了测定。通过对孤立(13)C共振(C(3)和烯碳)的标准边带强度分析以及对其他碳的非魔角旋转实验确定动态平均CSA。由此获得了一组18个约束条件,从中可以精确确定甾醇的分子序参数和平均取向。在胆固醇模型系统上验证了在该策略中使用计算得到的CSA的有效性。这种新方法使我们能够在三种摩尔比下量化麦角甾醇的动力学:16 mol%(Ld相)、30 mol%(Lo相)和23 mol%(混合相)。与胆固醇相反,麦角甾醇的分子扩散轴与刚性四环系统的惯性轴形成一个重要角度(14度)。