Department of Condensed Matter Physics, Laboratory of Biophysics, Jozef Stefan Institute, 1000 Ljubljana, Slovenia.
Instituto Biofísika (CSIC, UPV/EHU) and Departamento de Bioquímica, Universidad del País Vasco, 48080 Bilbao, Spain.
Chem Phys Lipids. 2018 Jul;213:102-110. doi: 10.1016/j.chemphyslip.2018.03.003. Epub 2018 Apr 22.
Despite the biological significance of sphingomyelins (SMs), there is far less structural information available for SMs compared to glycerophospholipids. Considerable confusion exists in the literature regarding even the phase behavior of SM bilayers. This work studies both palmitoyl (PSM) and egg sphingomyelin (ESM) in the temperature regime from 3 °C to 55 °C using X-ray diffraction and X-ray diffuse scattering on hydrated, oriented thick bilayer stacks. We observe clear evidence for a ripple phase for ESM in a large temperature range from 3 °C to the main phase transition temperature (T) of ∼38 °C. This unusual stability of the ripple phase was not observed for PSM, which was in a gel phase at 3 °C, with a gel-to-ripple transition at ∼24 °C and a ripple-to-fluid transition at ∼41 °C. We also report structural results for all phases. In the gel phase at 3 °C, PSM has chains tilted by ∼30° with an area/lipid ∼45 Å as determined by wide angle X-ray scattering. The ripple phases for both PSM and ESM have temperature dependent ripple wavelengths that are ∼145 Å near 30 °C. In the fluid phase, our electron density profiles combined with volume measurements allow calculation of area/lipid to be ∼64 Å for both PSM and ESM, which is larger than that from most of the previous molecular dynamics simulations and experimental studies. Our study demonstrates that oriented lipid films are particularly well-suited to characterize ripple phases since the scattering pattern is much better resolved than in unoriented samples.
尽管神经鞘磷脂 (SMs) 具有生物学意义,但与甘油磷脂相比,其结构信息要少得多。即使是关于 SM 双层膜的相行为,文献中也存在相当大的混淆。这项工作使用 X 射线衍射和 X 射线漫散射研究了温度范围从 3°C 到 55°C 的棕榈酰 (PSM) 和卵鞘磷脂 (ESM),在水合、定向厚双层堆栈中。我们在从 3°C 到主相变温度 (T) ∼38°C 的大温度范围内观察到 ESM 波纹相的明显证据。这种波纹相的不寻常稳定性在 PSM 中没有观察到,PSM 在 3°C 时处于凝胶相,在 ∼24°C 时有凝胶到波纹的转变,在 ∼41°C 时有波纹到流体的转变。我们还报告了所有相的结构结果。在 3°C 的凝胶相中,PSM 的链倾斜约 30°,广角 X 射线散射确定的面积/脂质约为 45Å。PSM 和 ESM 的波纹相在 30°C 附近具有温度相关的波纹波长,约为 145Å。在流体相中,我们的电子密度分布结合体积测量允许计算出 PSM 和 ESM 的面积/脂质约为 64Å,这比大多数以前的分子动力学模拟和实验研究都大。我们的研究表明,定向脂质膜特别适合于表征波纹相,因为散射图案比非定向样品更容易分辨。