Frewein Moritz P K, Doktorova Milka, Heberle Frederick A, Scott Haden L, Semeraro Enrico F, Porcar Lionel, Pabst Georg
Institute of Molecular Biosciences, University of Graz, NAWI Graz, 8010 Graz, Austria.
Institut Laue-Langevin, 38043 Grenoble, France.
Symmetry (Basel). 2021 Aug;13(8). doi: 10.3390/sym13081441. Epub 2021 Aug 5.
We addressed the frequent occurrence of mixed-chain lipids in biological membranes and their impact on membrane structure by studying several chain-asymmetric phosphatidylcholines and the highly asymmetric milk sphingomyelin. Specifically, we report trans-membrane structures of the corresponding fluid lamellar phases using small-angle X-ray and neutron scattering, which were jointly analyzed in terms of a membrane composition-specific model, including a headgroup hydration shell. Focusing on terminal methyl groups at the bilayer center, we found a linear relation between hydrocarbon chain length mismatch and the methyl-overlap for phosphatidylcholines, and a non-negligible impact of the glycerol backbone-tilting, letting the -chain penetrate deeper into the opposing leaflet by half a CH group. That is, penetration-depth differences due to the ester-linked hydrocarbons at the glycerol backbone, previously reported for gel phase structures, also extend to the more relevant physiological fluid phase, but are significantly reduced. Moreover, milk sphingomyelin was found to follow the same linear relationship suggesting a similar tilt of the sphingosine backbone. Complementarily performed molecular dynamics simulations revealed that there is always a part of the lipid tails bending back, even if there is a high interdigitation with the opposing chains. The extent of this back-bending was similar to that in chain symmetric bilayers. For both cases of adaptation to chain length mismatch, chain-asymmetry has a large impact on hydrocarbon chain ordering, inducing disorder in the longer of the two hydrocarbons.
我们通过研究几种链不对称磷脂酰胆碱和高度不对称的乳鞘磷脂,探讨了生物膜中混合链脂质的频繁出现及其对膜结构的影响。具体而言,我们使用小角X射线和中子散射报告了相应流体层状相的跨膜结构,并根据膜组成特异性模型(包括头基水合壳)进行了联合分析。聚焦于双层中心的末端甲基,我们发现磷脂酰胆碱的烃链长度错配与甲基重叠之间存在线性关系,并且甘油主链倾斜有不可忽视的影响,使得β链向相反叶层深入渗透半个-CH基团。也就是说,先前在凝胶相结构中报道的由于甘油主链上酯连接的烃导致的渗透深度差异也延伸到了更相关的生理流体相,但显著减小。此外,发现乳鞘磷脂遵循相同的线性关系,表明鞘氨醇主链有类似的倾斜。互补进行的分子动力学模拟表明,即使与相反链有高度的相互穿插,脂质尾部总是有一部分向后弯曲。这种向后弯曲的程度与链对称双层中的相似。对于适应链长度错配的两种情况,链不对称对烃链有序性有很大影响,在两种烃中较长的烃中诱导无序。