Holland Gregory P, Alam Todd M
Department of Electronic and Nanostructured Materials, Sandia National Laboratories, Albuquerque, NM 87185-0886, USA.
J Magn Reson. 2006 Aug;181(2):316-26. doi: 10.1016/j.jmr.2006.05.017. Epub 2006 Jun 22.
(13)C cross polarization magic angle spinning (CP-MAS) and (1)H MAS NMR spectra were collected on egg sphingomyelin (SM) bilayers containing cholesterol above and below the liquid crystalline phase transition temperature (T(m)). Two-dimensional (2D) dipolar heteronuclear correlation (HETCOR) spectra were obtained on SM bilayers in the liquid crystalline (L(alpha)) state for the first time and display improved resolution and chemical shift dispersion compared to the individual (1)H and (13)C spectra and significantly aid in spectral assignment. In the gel (L(beta)) state, the (1)H dimension suffers from line broadening due to the (1)H-(1)H homonuclear dipolar coupling that is not completely averaged by the combination of lipid mobility and MAS. This line broadening is significantly suppressed by implementing frequency switched Lee-Goldburg (FSLG) homonuclear (1)H decoupling during the evolution period. In the liquid crystalline (L(alpha)) phase, no improvement in line width is observed when FSLG is employed. All of the observed resonances are assignable to cholesterol and SM environments. This study demonstrates the ability to obtain 2D heteronuclear correlation experiments in the gel state for biomembranes, expands on previous SM assignments, and presents a comprehensive (1)H/(13)C NMR assignment of SM bilayers containing cholesterol. Comparisons are made to a previous report on cholesterol chemical shifts in dimyristoylphosphatidylcholine (DMPC) bilayers. A number of similarities and some differences are observed and discussed.
在高于和低于液晶相转变温度(T(m))的含胆固醇的卵鞘磷脂(SM)双层膜上收集了(13)C交叉极化魔角旋转(CP-MAS)和(1)H MAS NMR谱。首次在液晶(L(α))态的SM双层膜上获得了二维(2D)偶极异核相关(HETCOR)谱,与单独的(1)H和(13)C谱相比,其分辨率和化学位移分散性得到了改善,并且显著有助于光谱归属。在凝胶(L(β))态下,由于(1)H-(1)H同核偶极耦合,(1)H维度存在线宽展宽,而脂质流动性和MAS的组合并不能完全平均这种耦合。通过在演化期实施频率切换李-戈德堡(FSLG)同核(1)H去耦,这种线宽展宽得到了显著抑制。在液晶(L(α))相,采用FSLG时未观察到线宽有改善。所有观察到的共振都可归属于胆固醇和SM环境。本研究证明了在凝胶态下对生物膜进行二维异核相关实验的能力,扩展了先前对SM的归属,并给出了含胆固醇的SM双层膜的全面(1)H/(13)C NMR归属。与先前关于二肉豆蔻酰磷脂酰胆碱(DMPC)双层膜中胆固醇化学位移的报告进行了比较。观察并讨论了一些相似之处和差异。