Novak Predrag, Barber Jill, Cikos Ana, Arsic Biljana, Plavec Janez, Lazarevski Gorjana, Tepes Predrag, Kosutić-Hulita Nada
Department of Chemistry, University of Zagreb, Croatia.
Bioorg Med Chem. 2009 Aug 15;17(16):5857-67. doi: 10.1016/j.bmc.2009.07.013. Epub 2009 Jul 9.
The solution and solid state conformations of several 6-O-methyl homoerythromycins 1-4 were studied using a combination of X-ray crystallography, NMR spectroscopy and molecular modelling calculations. In the solid state 1 was found to exist as the two independent molecules with similar structures termed 3-endo-folded-out. In solution a significant conformational flexibility was noticed especially in the C2 to C5 region. The compounds 1 and 2 unlike 14-membered macrolides adopted the 3-endo-folded-out conformation while 3 and 4 existed in the classical folded-out conformation. TrNOESY and STD experiments showed that 1 and 2 bound to the Escherichia coli ribosome while 3 and 4, lacking the cladinose sugar, did not exhibit binding activities, this being in accordance with biochemical data. The bound conformations were found to be very similar to the free ones, some small differences were observed and discussed. The STD experiments provided evidence on binding epitopes. The structural parts of 1 and 2 in close contact with ribosome were similar, however the degree of saturation transfer was higher for 2. The differences between tr-NOE data and STD enhancements in 1 and 2 arouse as a consequence of structural changes upon binding and a closer proximity of 2 to the ribosome surface. An understanding of the molecular mechanisms involved in the interaction of macrolides with ribosomes can help in developing strategies aiming at design of potential inhibitors.
采用X射线晶体学、核磁共振光谱和分子模型计算相结合的方法,研究了几种6 - O - 甲基高红霉素1 - 4的溶液和固态构象。在固态中,发现1以两个结构相似的独立分子形式存在,称为3 - 内折出构象。在溶液中,尤其是在C2至C5区域观察到显著的构象灵活性。与14元大环内酯不同,化合物1和2采用3 - 内折出构象,而3和4以经典的折出构象存在。TrNOESY和STD实验表明,1和2与大肠杆菌核糖体结合,而缺乏克拉定糖的3和4没有表现出结合活性,这与生化数据一致。发现结合构象与游离构象非常相似,观察到并讨论了一些小的差异。STD实验提供了关于结合表位的证据。1和2与核糖体紧密接触的结构部分相似,然而2的饱和转移程度更高。1和2中tr - NOE数据与STD增强之间的差异是由于结合时的结构变化以及2与核糖体表面更接近所致。了解大环内酯与核糖体相互作用的分子机制有助于制定旨在设计潜在抑制剂的策略。