Vogel Alexander, Scheidt Holger A, Feller Scott E, Metso Jari, Badeau Robert M, Tikkanen Matti J, Wähälä Kristiina, Jauhiainen Matti, Huster Daniel
Institute of Medical Physics and Biophysics, University of Leipzig, Leipzig, Germany.
Wabash College, Crawfordsville, Indiana.
Biophys J. 2014 Jul 1;107(1):114-25. doi: 10.1016/j.bpj.2014.04.060.
Estradiol (E2) and E2 oleate associate with high-density lipoproteins (HDLs). Their orientation in HDLs is unknown. We studied the orientation of E2 and E2 oleate in membranes and reconstituted HDLs, finding that E2 and E2 oleate are membrane-associated and highly mobile. Our combination of NMR measurements, molecular dynamics simulation, and analytic theory identifies three major conformations where the long axis of E2 assumes a parallel, perpendicular, or antiparallel orientation relative to the membrane's z-direction. The perpendicular orientation is preferred, and furthermore, in this orientation, E2 strongly favors a particular roll angle, facing the membrane with carbons 6, 7, 15, and 16, whereas carbons 1, 2, 11, and 12 point toward the aqueous phase. In contrast, the long axis of E2 oleate is almost exclusively oriented at an angle of ∼60° to the z-direction. In such an orientation, the oleoyl chain is firmly inserted into the membrane. Thus, both E2 and E2 oleate have a preference for interface localization in the membrane. These orientations were also found in HDL discs, suggesting that only lipid-E2 interactions determine the localization of the molecule. The structural mapping of E2 and E2 oleate may provide a design platform for specific E2-HDL-targeted pharmacological therapies.
雌二醇(E2)和油酸雌二醇与高密度脂蛋白(HDL)结合。它们在HDL中的取向尚不清楚。我们研究了E2和油酸雌二醇在膜和重组HDL中的取向,发现E2和油酸雌二醇与膜相关且具有高度流动性。我们结合核磁共振测量、分子动力学模拟和分析理论,确定了三种主要构象,其中E2的长轴相对于膜的z方向呈平行、垂直或反平行取向。垂直取向是首选的,此外,在这种取向下,E2强烈倾向于特定的滚动角度,以碳6、7、15和16面向膜,而碳1、2、11和12指向水相。相比之下,油酸雌二醇的长轴几乎完全与z方向成约60°角取向。在这种取向下,油酰链牢固地插入膜中。因此,E2和油酸雌二醇都倾向于在膜中的界面定位。在HDL圆盘上也发现了这些取向,这表明只有脂质 - E2相互作用决定了分子的定位。E2和油酸雌二醇的结构图谱可能为特定的E2 - HDL靶向药物治疗提供设计平台。