Department of Biochemistry, University of Geneva, 30 Quai Ernest Ansermet, CH-1211 Geneva, Switzerland.
Metab Eng. 2011 Sep;13(5):555-69. doi: 10.1016/j.ymben.2011.06.006. Epub 2011 Jun 30.
Sterols are major lipids in eukaryotes and differ in their specific structure between species. Both cholesterol and ergosterol can form liquid ordered domains in artificial membranes. We reasoned that substituting the main sterol ergosterol by cholesterol in yeast should permit domain formation and discriminate between physical and sterol structure-dependent functions. Using a cholesterol-producing yeast strain, we show that solute transporters for tryptophan and arginine are functional, whereas the export of weak organic acids via Pdr12p, a multi-drug resistance family member, is not. The latter reveals a sterol function that is probably dependent upon a precise sterol structure. We present a series of novel yeast strains with different sterol compositions as valuable tools to characterize sterol function and use them to refine the sterol requirements for Pdr12p. These strains will also be improved hosts for heterologous expression of sterol-dependent proteins and safe sources to obtain pure cholesterol and other sterols.
甾醇是真核生物中的主要脂质,其结构在不同物种间存在差异。胆固醇和麦角固醇都可以在人工膜中形成液态有序域。我们推断,在酵母中将主要甾醇麦角固醇替换为胆固醇应该允许形成域,并区分物理和甾醇结构依赖性功能。使用产生胆固醇的酵母菌株,我们表明色氨酸和精氨酸的溶质转运体是功能性的,而多药耐药家族成员 Pdr12p 介导的弱有机酸的输出则不是。后者揭示了一种可能依赖于精确甾醇结构的甾醇功能。我们提出了一系列具有不同甾醇组成的新型酵母菌株,作为表征甾醇功能的有价值工具,并利用它们来优化 Pdr12p 的甾醇需求。这些菌株也将成为用于异源表达甾醇依赖性蛋白的改良宿主,并可作为获取纯胆固醇和其他甾醇的安全来源。