Desfougères Thomas, Ferreira Thierry, Bergès Thierry, Régnacq Matthieu
Laboratoire de Génétique de la Levure CNRS-UMR6161, Université de Poitiers, 40 avenue du Recteur Pineau, 86022 Poitiers cedex, France.
Biochem J. 2008 Jan 1;409(1):299-309. doi: 10.1042/BJ20071028.
The yeast Saccharomyces cerevisiae is a facultative anaerobic organism. Under anaerobiosis, sustained growth relies on the presence of exogenously supplied unsaturated fatty acids and ergosterol that yeast is unable to synthesize in the absence of oxygen or upon haem depletion. In the absence of exogenous supplementation with unsaturated fatty acid, a net accumulation of SFA (saturated fatty acid) is observed that induces significant modification of phospholipid profile [Ferreira, Régnacq, Alimardani, Moreau-Vauzelle and Bergès (2004) Biochem. J. 378, 899-908]. In the present paper, we focus on the role of SFH2/CSR1, a hypoxic gene related to SEC14 and its involvement in lipid metabolism upon haem depletion in the absence of oleic acid supplementation. We observed that inactivation of SFH2 results in enhanced accumulation of SFA and phospholipid metabolism alterations. It results in premature growth arrest and leads to an exacerbated sensitivity to exogenous SFA. This phenotype is suppressed in the presence of exogenous oleic acid, or by a controlled expression of FAS1, one of the two genes encoding FAS. We present several lines of evidence to suggest that Sfh2p and oleic acid regulate SFA synthase in yeast at different levels: whereas oleic acid acts on FAS2 at the transcriptional level, we show that Sfh2p inhibits fatty acid synthase activity in response to haem depletion.
酿酒酵母是一种兼性厌氧生物。在无氧条件下,持续生长依赖于外源供应的不饱和脂肪酸和麦角固醇的存在,酵母在无氧或血红素耗尽时无法合成这些物质。在没有外源补充不饱和脂肪酸的情况下,会观察到饱和脂肪酸(SFA)的净积累,这会导致磷脂谱发生显著改变[费雷拉、雷尼亚克、阿利马尔达尼、莫罗 - 沃泽勒和贝热斯(2004年)《生物化学杂志》378卷,899 - 908页]。在本文中,我们聚焦于与SEC14相关的缺氧基因SFH2/CSR1的作用及其在不补充油酸的情况下血红素耗尽时参与脂质代谢的情况。我们观察到SFH2的失活会导致饱和脂肪酸积累增加和磷脂代谢改变。这会导致过早的生长停滞,并对外源饱和脂肪酸产生加剧的敏感性。在外源油酸存在的情况下,或者通过编码脂肪酸合成酶(FAS)的两个基因之一FAS1的可控表达,这种表型会受到抑制。我们提供了几条证据表明Sfh2p和油酸在不同水平上调节酵母中的饱和脂肪酸合成酶:虽然油酸在转录水平上作用于FAS2,但我们表明Sfh2p会响应血红素耗尽而抑制脂肪酸合成酶活性。