Bagiński M, Tempczyk A, Borowski E
Department of Pharmaceutical Technology and Biochemistry, Technical University of Gdańsk, Poland.
Eur Biophys J. 1989;17(3):159-66. doi: 10.1007/BF00254770.
A comparative conformational analysis of cholesterol and ergosterol has been carried out using molecular mechanics methods. These studies are aimed at giving a better understanding of the molecular nature of the interaction of these sterols with polyene macrolide antibiotics. Structures of cholesterol and ergosterol determined by X-ray methods have been used as initial geometries of these molecules for force field calculations. The calculation of steric energy has also been made for conformations which do not appear in the crystal. The latter conformers have different conformations of the side chain as well as different conformations of rings A and D. The rotational barriers around bonds C17-C20 and C20-C22 have also been calculated. The results obtained on differences and similarities in the conformations of cholesterol and ergosterol allow us to postulate a mechanism for differential interaction with the antibiotics. The relatively rigid side chain of ergosterol (stretched molecule) in comparison with the flexible side chain of cholesterol (bent molecule), allows better intermolecular contact of the first sterol molecule with a polyene macrolide and in consequence facilitates complex formation involving Van der Waal's forces.
已使用分子力学方法对胆固醇和麦角固醇进行了比较构象分析。这些研究旨在更好地理解这些固醇与多烯大环内酯类抗生素相互作用的分子本质。通过X射线方法测定的胆固醇和麦角固醇的结构已被用作这些分子的初始几何结构进行力场计算。对于晶体中未出现的构象也进行了空间能计算。后一种构象异构体具有不同的侧链构象以及A环和D环的不同构象。还计算了C17 - C20和C20 - C22键周围的旋转势垒。关于胆固醇和麦角固醇构象差异和相似性的研究结果使我们能够推测出与抗生素差异相互作用的机制。与胆固醇的柔性侧链(弯曲分子)相比,麦角固醇相对刚性的侧链(伸展分子)使得第一个固醇分子与多烯大环内酯有更好的分子间接触,从而促进了涉及范德华力的复合物形成。