School of Chemistry, University of Birmingham, Edgbaston, BirminghamB15 2TT, UK.
Department of Chemistry, University of Liverpool, Crown Street, LiverpoolL69 7ZD, UK.
Langmuir. 2022 Nov 22;38(46):14290-14301. doi: 10.1021/acs.langmuir.2c02370. Epub 2022 Nov 10.
Sphingolipids are an important class of lipids found in mammalian cell membranes with important structural and signaling roles. They differ from another major group of lipids, the glycerophospholipids, in the connection of their hydrocarbon chains to their headgroups. In this study, a combination of electrochemical and structural methods has been used to elucidate the effect of this difference on sphingolipid behavior in an applied electric field. -Palmitoyl sphingomyelin forms bilayers of similar coverage and thickness to its close analogue di-palmitoyl phosphatidylcholine. Grazing incidence diffraction data show slightly closer packing and a smaller chain tilt angle from the surface normal. Electrochemical IR results at low charge density show that the difference in tilt angle is retained on deposition to form bilayers. The bilayers respond differently to increasing electric field strength: chain tilt angles increase for both molecules, but sphingomyelin chains remain tilted as field strength is further increased. This behavior is correlated with disruption of the hydrogen-bonding network of small groups of sphingomyelin molecules, which may have significance for the behavior of molecules in lipid rafts in the presence of strong fields induced by ion gradients or asymmetric distribution of charged lipids.
鞘脂类是哺乳动物细胞膜中一类重要的脂质,具有重要的结构和信号作用。它们与另一大类脂质——甘油磷脂不同,其烃链与头基的连接方式不同。在这项研究中,电化学和结构方法的结合被用来阐明这种差异对鞘脂类在电场中行为的影响。棕榈酰鞘氨醇与类似的二棕榈酰磷脂酰胆碱形成具有相似覆盖率和厚度的双层。掠入射衍射数据显示,堆积更紧密,与表面法线的链倾斜角度更小。在低电荷密度下的电化学红外结果表明,在沉积形成双层时,倾斜角度的差异得以保留。双层对电场强度的增加反应不同:两种分子的链倾斜角度都增加,但随着电场强度的进一步增加,鞘氨醇链仍保持倾斜。这种行为与鞘氨醇分子的氢键网络的破坏有关,这可能对脂质筏中分子在离子梯度或带电脂质不对称分布引起的强场中的行为有意义。