Biochemistry, Department of Biosciences, Åbo Akademi University, Turku, Finland.
Biophys J. 2013 Feb 5;104(3):604-12. doi: 10.1016/j.bpj.2012.12.026.
Sphingomyelins (SMs) and ceramides are known to interact favorably in bilayer membranes. Because ceramide lacks a headgroup that could shield its hydrophobic body from unfavorable interactions with water, accommodation of ceramide under the larger phosphocholine headgroup of SM could contribute to their favorable interactions. To elucidate the role of SM headgroup for SM/ceramide interactions, we explored the effects of reducing the size of the phosphocholine headgroup (removing one, two, or three methyls on the choline moiety, or the choline moiety itself). Using differential scanning calorimetry and fluorescence spectroscopy, we found that the size of the SM headgroup had no marked effect on the thermal stability of ordered domains formed by SM analog/palmitoyl ceramide (PCer) interactions. In more complex bilayers composed of a fluid glycerophospholipid, SM analog, and PCer, the thermal stability and molecular order of the laterally segregated gel domains were roughly identical despite variation in SM headgroup size. We suggest that that the association between PCer and SM analogs was stabilized by ceramide's aversion for disordered phospholipids, by interfacial hydrogen bonding between PCer and the SM analogs, and by attractive van der Waals' forces between saturated chains of PCer and SM analogs.
鞘磷脂 (SM) 和神经酰胺已知在双层膜中相互作用良好。由于神经酰胺缺乏一个可以将其疏水性主体与水的不利相互作用屏蔽起来的头部基团,因此,在 SM 的较大的磷酸胆碱头部基团下容纳神经酰胺可能有助于它们的有利相互作用。为了阐明 SM 头部基团对 SM/神经酰胺相互作用的作用,我们探索了减小磷酸胆碱头部基团大小的影响(去除胆碱部分上的一个、两个或三个甲基,或去除胆碱部分本身)。使用差示扫描量热法和荧光光谱法,我们发现 SM 头部基团的大小对 SM 类似物/棕榈酰神经酰胺 (PCer) 相互作用形成的有序域的热稳定性没有明显影响。在由流体甘油磷脂、SM 类似物和 PCer 组成的更复杂的双层中,尽管 SM 头部基团大小不同,但横向分隔的凝胶域的热稳定性和分子有序性大致相同。我们认为,PCer 和 SM 类似物之间的关联是通过神经酰胺对无序磷脂的厌恶、PCer 和 SM 类似物之间的界面氢键以及 PCer 和 SM 类似物的饱和链之间的吸引力范德华力来稳定的。