Matsumori Nobuaki, Houdai Toshihiro, Murata Michio
Department of Chemistry, Graduate School of Science, Osaka University, Machikaneyama, Toyonaka, Osaka 560-0043, Japan.
J Org Chem. 2007 Feb 2;72(3):700-6. doi: 10.1021/jo061309p.
Amphotericin B (AmB) is known to self-assemble to form an ion channel across lipid bilayer membranes. To gain insight into the conformation of AmB in lipidic environments, AmB in SDS micelles was subjected to high-resolution NMR and CD measurements, and the NMR-derived conformation thus obtained was refined by molecular mechanics calculations. These results indicate that AmB in SDS micelles is conformationally fixed particularly for the macrolide moiety. Paramagnetic relaxation experiments with the use of Mn2+ reveal that AmB is shallowly embedded in the micelle with the polyhydroxyl chain being close to the water interface and the side of polyene portion facing to the micelle interior. CD measurements demonstrate that AmB is in a monomeric form in SDS micelles. The structure of AmB in the micelles obtained in the present study may reproduce the initial stage of membrane interaction of AmB prior to the assembly formation in biomembranes.
两性霉素B(AmB)已知会自组装形成跨越脂质双层膜的离子通道。为深入了解AmB在脂质环境中的构象,对SDS胶束中的AmB进行了高分辨率核磁共振(NMR)和圆二色(CD)测量,并通过分子力学计算对由此获得的NMR衍生构象进行了优化。这些结果表明,SDS胶束中的AmB在构象上是固定的,尤其是对于大环内酯部分。使用Mn²⁺进行的顺磁弛豫实验表明,AmB浅嵌入胶束中,多羟基链靠近水界面,多烯部分的一侧面向胶束内部。CD测量表明,AmB在SDS胶束中呈单体形式。本研究中获得的胶束中AmB的结构可能再现了AmB在生物膜中组装形成之前与膜相互作用的初始阶段。