Ness F, Bourot S, Régnacq M, Spagnoli R, Bergès T, Karst F
Laboratoire de Génétique de la Levure, Université de Poitiers, France.
Eur J Biochem. 2001 Mar;268(6):1585-95.
Budding yeast Saccharomyces cerevisiae is a facultative anaerobe whose growth upon oxygen starvation depends on its capacity to import exogenously supplied sterols, whereas the cells are not permeable to these molecules when grown aerobically. Few genes have been identified as being involved in sterol uptake. A higher SUT1 gene dosage leads to a modest, but significant, increase in sterol uptake under aerobic conditions. Based on sequence and physiological data, SUT1 is a hypoxic gene negatively regulated when the cells are grown in the presence of oxygen. We replaced the SUT1 promoter with the constitutive PMA1 gene promoter in order to enhance its transcription. We observed that sterol uptake was then comparable with that obtained with a sterol importing hem1 mutant, although the heme status of the strain was not modified in a process which still occurs when the cells are not growing. Unexpectedly, SUT1 constitutive expression led to a parallel significant increase in endogenous sterol biosynthesis. Moreover, here we present new data showing that the structurally related YPR009 gene (SUT2) is a functional homologue of SUT1, and that both gene products may represent two novel yeast regulatory proteins involved in sterol uptake.
出芽酵母酿酒酵母是一种兼性厌氧菌,其在缺氧条件下的生长取决于其摄取外源供应固醇的能力,而在有氧条件下生长时细胞对这些分子是不可渗透的。很少有基因被确定参与固醇摄取。较高的SUT1基因剂量会导致在有氧条件下固醇摄取适度但显著增加。基于序列和生理数据,SUT1是一个在细胞有氧生长时受到负调控的缺氧基因。我们用组成型PMA1基因启动子替换了SUT1启动子以增强其转录。我们观察到,此时固醇摄取与用固醇导入突变体hem1获得的结果相当,尽管该菌株的血红素状态在细胞不生长时仍会发生的过程中未被改变。出乎意料的是,SUT1的组成型表达导致内源性固醇生物合成同时显著增加。此外,我们在此展示的新数据表明,结构相关的YPR009基因(SUT2)是SUT1的功能同源物,并且这两个基因产物可能代表参与固醇摄取的两种新型酵母调节蛋白。