Matsumori Nobuaki, Morooka Atsushi, Murata Michio
Department of Chemistry, Graduate School of Science, Osaka University, 1-16 Machikaneyama, Toyonaka, Osaka 560-0043, Japan.
J Med Chem. 2006 Jun 15;49(12):3501-8. doi: 10.1021/jm051210v.
Although many nonpeptidic drugs target biological membrane and membrane proteins, it is still difficult to define the membrane-bound structure of the drugs. In this study, we utilized bicelles as a membrane model, since the bicelles, which have planar lipid bilayer portions, are thought to be a more appropriate and practical membrane model than micelles. Bicelles with a small diameter allow for measurements of liquid NMR due to fast tumbling in solution. We targeted erythromycin A (EA) as a membrane-binding compound because it is pointed out that the drug interacts with lysosomal membranes, inhibits phospholipase A, and consequently induces phospholipidosis as a side effect. The conformation of EA in the bicelle was successfully determined on the basis of coupling constants and NOEs. Measurements of intermolecular NOEs and paramagnetic relaxation times revealed that the drug is located shallowly in the membrane surface, with the dimethylamino group being close to the phosphate, and the macrolide portion adjacent to upper sides of the acyl chains. This study shows the general utility of isotropic bicelles for detailed conformational and orientational studies of membrane-associated nonpeptidic drugs.
尽管许多非肽类药物作用于生物膜和膜蛋白,但确定这些药物的膜结合结构仍然困难。在本研究中,我们使用双分子层作为膜模型,因为具有平面脂质双分子层部分的双分子层被认为比胶束更合适、更实用。直径较小的双分子层由于在溶液中快速翻滚,便于进行液体核磁共振测量。我们选择红霉素A(EA)作为膜结合化合物,因为有研究指出该药物与溶酶体膜相互作用,抑制磷脂酶A,进而导致磷脂沉积这一副作用。基于耦合常数和核Overhauser效应(NOE),成功确定了EA在双分子层中的构象。分子间NOE和顺磁弛豫时间的测量结果表明,该药物浅位于膜表面,二甲氨基靠近磷酸基团,大环内酯部分毗邻酰基链的上侧。本研究表明各向同性双分子层在膜相关非肽类药物的详细构象和取向研究中具有普遍实用性。