Pezeshkian Weria, Chaban Vitaly V, Johannes Ludger, Shillcock Julian, Ipsen John H, Khandelia Himanshu
Center for Biomembrane Physics (MEMPHYS), Department of Physics, Chemistry and Pharmacy (FKF), University of Southern Denmark, Campusvej 55, 5230 Odense M, Denmark.
Soft Matter. 2015 Feb 4;11(7):1352-61. doi: 10.1039/c4sm02456g.
Globotriaosylceramide (Gb3) is a glycosphingolipid present in the plasma membrane that is the natural receptor of the bacterial Shiga toxin. The unsaturation level of Gb3 acyl chains has a drastic impact on lipid bilayer properties and phase behaviour, and on many Gb3-related cellular processes. For example: the Shiga toxin B subunit forms tubular invaginations in the presence of Gb3 with an unsaturated acyl chain (U-Gb3), while in the presence of Gb3 with a saturated acyl chain (S-Gb3) such invagination does not occur. We have used all-atom molecular dynamics simulations to investigate the effects of the Gb3 concentration and its acyl chain saturation on the phase behaviour of a mixed bilayer of dioleoylphosphatidylcholine and Gb3. The simulation results show that: (1) the Gb3 acyl chains (longer tails) from one leaflet interdigitate into the opposing leaflet and lead to significant bilayer rigidification and immobilisation of the lipid tails. S-Gb3 can form a highly ordered, relatively immobile phase which is resistant to bending while these changes for U-Gb3 are not significant. (2) At low concentrations of Gb3, U-Gb3 and S-Gb3 have a similar impact on the bilayer reminiscent of the effect of sphingomyelin lipids and (3) At higher Gb3 concentrations, U-Gb3 mixes better with dioleoylphosphatidylcholine than S-Gb3. Our simulations also provide the first molecular level structural model of Gb3 in membranes.
球三糖神经酰胺(Gb3)是一种存在于质膜中的糖鞘脂,是细菌志贺毒素的天然受体。Gb3酰基链的不饱和度对脂质双层性质和相行为以及许多与Gb3相关的细胞过程有重大影响。例如:志贺毒素B亚基在具有不饱和酰基链的Gb3(U-Gb3)存在下形成管状内陷,而在具有饱和酰基链的Gb3(S-Gb3)存在下则不会发生这种内陷。我们使用全原子分子动力学模拟来研究Gb3浓度及其酰基链饱和度对二油酰磷脂酰胆碱和Gb3混合双层相行为的影响。模拟结果表明:(1)来自一个小叶的Gb3酰基链(较长的尾部)相互交错进入相对的小叶,并导致脂质尾部的双层显著硬化和固定。S-Gb3可以形成高度有序、相对固定的相,抗弯曲,而U-Gb3的这些变化不显著。(2)在低浓度的Gb3下,U-Gb3和S-Gb3对双层的影响相似,类似于鞘磷脂的作用;(3)在较高的Gb3浓度下,U-Gb3比S-Gb3与二油酰磷脂酰胆碱混合得更好。我们的模拟还提供了膜中Gb3的第一个分子水平结构模型。