Howard K P, Prestegard J H
Department of Chemistry, Yale University, New Haven, Connecticut 06511, USA.
Biophys J. 1996 Nov;71(5):2573-82. doi: 10.1016/S0006-3495(96)79449-3.
The conformation of uniformly 13C-labeled sulfoquinovosyldiacylglycerol (SQDG) is studied in both membrane and solution environments using NMR spectroscopy. Analysis in a membrane-like environment is based on the measurement of dipolar interactions between 13C-13C and 1H-13C spin pairs and on the measurement of 13C chemical shift anisotropy offsets, which appear in magnetically oriented phospholipid-based membrane fragments. Potential energy maps for glycosidic torsions, phi, psi and theta 1, are calculated with a membrane interaction energy and are used in the interpretation of experimental data. The membrane-bound description for SQDG is most consistent with a set of low-energy conformations that extends the headgroup of SQDG away from the membrane surface. Analysis of the conformation of SQDG in CD3OD solution is based on measured 3JCH scalar couplings. The description of the solution conformation is modeled as a mixture of low-energy conformers predicted in the absence of a membrane interaction term and involves more extensive motional averaging than the model for SQDG embedded in the lipid matrix.
利用核磁共振光谱法,在膜环境和溶液环境中研究了均匀13C标记的磺基喹喔啉二酰基甘油(SQDG)的构象。在类膜环境中的分析基于对13C-13C和1H-13C自旋对之间偶极相互作用的测量以及对13C化学位移各向异性偏移的测量,这些出现在基于磁性取向磷脂的膜片段中。糖苷扭转角phi、psi和theta 1的势能图通过膜相互作用能计算得出,并用于解释实验数据。SQDG的膜结合描述与一组低能量构象最为一致,这些构象使SQDG的头基远离膜表面。在CD3OD溶液中对SQDG构象的分析基于测量的3JCH标量耦合。溶液构象的描述被建模为在没有膜相互作用项的情况下预测的低能量构象的混合物,并且比嵌入脂质基质中的SQDG模型涉及更广泛的运动平均。