Dupont Sebastien, Beney Laurent, Ferreira Thierry, Gervais Patrick
Laboratoire de Génie des Procédés Microbiologiques et Alimentaires, Université de Bourgogne/AgroSup Dijon, 1, esplanade Erasme, 21000 Dijon, France.
Biochim Biophys Acta. 2011 Jun;1808(6):1520-8. doi: 10.1016/j.bbamem.2010.11.012. Epub 2010 Nov 13.
The plasma membrane (PM) is a main site of injury during osmotic perturbation. Sterols, major lipids of the PM structure in eukaryotes, are thought to play a role in ensuring the stability of the lipid bilayer during physicochemical perturbations. Here, we investigated the relationship between the nature of PM sterols and resistance of the yeast Saccharomyces cerevisiae to hyperosmotic treatment. We compared the responses to osmotic dehydration (viability, sterol quantification, ultrastructure, cell volume, and membrane permeability) in the wild-type (WT) strain and the ergosterol mutant erg6Δ strain. Our main results suggest that the nature of membrane sterols governs the mechanical behavior of the PM during hyperosmotic perturbation. The mutant strain, which accumulates ergosterol precursors, was more sensitive to osmotic fluctuations than the WT, which accumulates ergosterol. The hypersensitivity of erg6Δ was linked to modifications of the membrane properties, such as stretching resistance and deformation, which led to PM permeabilization during the volume variation during the dehydration-rehydration cycles. Anaerobic growth of erg6Δ strain with ergosterol supplementation restored resistance to osmotic treatment. These results suggest a relationship between hydric stress resistance and the nature of PM sterols. We discuss this relationship in the context of the evolution of the ergosterol biosynthetic pathway.
质膜(PM)是渗透扰动期间损伤的主要部位。固醇是真核生物中质膜结构的主要脂质,被认为在物理化学扰动期间确保脂质双层的稳定性方面发挥作用。在此,我们研究了质膜固醇的性质与酿酒酵母对高渗处理的抗性之间的关系。我们比较了野生型(WT)菌株和麦角固醇突变体erg6Δ菌株对渗透脱水的反应(活力、固醇定量、超微结构、细胞体积和膜通透性)。我们的主要结果表明,膜固醇的性质在高渗扰动期间决定了质膜的力学行为。积累麦角固醇前体的突变菌株比积累麦角固醇的野生型对渗透波动更敏感。erg6Δ的超敏性与膜特性的改变有关,如抗拉伸性和变形,这导致在脱水-复水循环中体积变化期间质膜通透性增加。用麦角固醇补充erg6Δ菌株的厌氧生长恢复了对渗透处理的抗性。这些结果表明了耐水胁迫与质膜固醇性质之间的关系。我们在麦角固醇生物合成途径进化的背景下讨论了这种关系。