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Osmoprotective effect of ubiquinone in lipid vesicles modelling the E. coli plasma membrane

机译:大肠杆菌膜膜脂囊泡在大肠杆菌浆膜膜中的渗透作用

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摘要

Bacteria need to be able to adapt to sudden changes in their environment, including drastic changes in the surrounding osmolarity. As part of this adaptation, the cells adjust the composition of their cytoplasmic membrane. Recent studies have shown that ubiquinones, lipid soluble molecules involved in cell respiration, are overproduced by bacteria grown in hyperosmotic conditions and it is thus believed that these molecules can provide with osmoprotection. Hereby we explore the mechanisms behind these observations. Liposomes with a lipid headgroup composition mimicking that of the cytoplasmic membrane of E. coli are used as suitable models. The effect of ubiquinone-10 (Q10) on water transport across the membranes is characterized using a custom developed fluorescence-based experimental approach to simultaneously determine the membrane permeability coefficient and estimate the elastic resistance of the membrane towards deformation. It is shown that both parameters are affected by the presence of ubiquinone-10. Solanesol, a molecule similar to Q10 but lacking the quinone headgroup, also provides with osmoprotection although it only improves the resistance of the membrane against deformation. The fluorescence experiments are complemented by cryogenic transmission electron microscopy studies showing that the E. coli membrane mimics tend to flatten into spheroid oblate structures when osmotically stressed, suggesting the possibility of lipid segregation. In agreement with its proposed osmoprotective role, the flattening process is hindered by the presence of Q10.
机译:细菌需要能够适应环境的突然变化,包括周围渗透性的剧烈变化。作为这种适应的一部分,细胞调节其细胞质膜的组成。最近的研究表明,泛素酮,涉及细胞呼吸的脂质可溶性分子,通过在高骨质条件下生长的细菌过度引发,因此认为这些分子可以提供OsMoprotection。在此,我们探讨了这些观察结果背后的机制。脂质体具有模拟大肠杆菌的细胞质膜的脂质头组合物的脂质体用作合适的模型。泛醌-10(Q10)在膜上的水输送的影响的特征在于使用定制的基于荧光的实验方法来同时确定膜渗透系数并估计膜对变形的弹性抗性。结果表明,两种参数受泛醌-10的存在影响。 Solanesol,一种类似于Q10但缺乏醌头组的分子,也提供了OsMopRotection,尽管它只改善了膜对变形的电阻。荧光实验是通过低温透射电子显微镜研究的互补,显示E. Coli膜模拟物在渗透压应激时倾向于在球状圆形结构中变平,表明脂质偏析的可能性。在与其提出的渗透作用的同意中,通过Q10的存在阻碍了扁平化过程。

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