Valachovic M, Hronská L, Hapala I
Institute of Animal Biochemistry and Genetics, Slovak Academy of Sciences, 900 28, Ivanka pri Dunaji, Slovak Republic.
FEMS Microbiol Lett. 2001 Apr 1;197(1):41-5. doi: 10.1111/j.1574-6968.2001.tb10580.x.
Yeast Saccharomyces cerevisiae is auxotrophic for ergosterol in the absence of oxygen. We showed that complex changes in esterification of exogenously supplied sterols were also induced by anaerobiosis. Utilization of oleic acid for sterol esterification was significantly impaired in anaerobic cells. Furthermore, anaerobic cells fed different sterols exhibited striking variation in esterification efficiency (high levels of sterol esters for cholesterol and sitosterol, low levels for ergosterol, lanosterol or stigmasterol). Relative activities of two yeast acylCoA:sterol acyltransferases (Are1p and Are2p) changed in response to anaerobiosis: while Are2p was dominant under aerobic conditions, Are1p provided the major activity in the absence of oxygen. Our results indicate that sterol esters may fulfil different roles in aerobic and anaerobic cells.
在无氧条件下,酿酒酵母对麦角固醇是营养缺陷型的。我们发现,厌氧状态也会诱导外源供应固醇酯化作用发生复杂变化。厌氧细胞中利用油酸进行固醇酯化的能力显著受损。此外,给厌氧细胞投喂不同的固醇时,其酯化效率表现出显著差异(胆固醇和谷甾醇的固醇酯水平较高,而麦角固醇、羊毛甾醇或豆甾醇的水平较低)。两种酵母酰基辅酶A:固醇酰基转移酶(Are1p和Are2p)的相对活性因厌氧状态而改变:在有氧条件下Are2p占主导,而在无氧条件下Are1p发挥主要作用。我们的结果表明,固醇酯在需氧和厌氧细胞中可能发挥不同作用。