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酵母鞘脂不需要含有超长链脂肪酸。

Yeast sphingolipids do not need to contain very long chain fatty acids.

作者信息

Cerantola Vanessa, Vionnet Christine, Aebischer Olivier F, Jenny Titus, Knudsen Jens, Conzelmann Andreas

机构信息

Department of Medicine/Biochemistry, University of Fribourg, Rue du Musée, CH-1700 Fribourg, Switzerland.

出版信息

Biochem J. 2007 Jan 1;401(1):205-16. doi: 10.1042/BJ20061128.

Abstract

Synthesis of VLCFAs (very long chain fatty acids) and biosynthesis of DHS (dihydrosphingosine) both are of vital importance for Saccharomyces cerevisiae. The bulk of VLCFAs and DHS are used for ceramide synthesis by the Lag1p (longevity-assurance gene 1)/Lac1p (longevity-assurance gene cognate 1)/Lip1p (Lag1p/Lac1p interacting protein) ceramide synthase. LAG1 and LAC1 are redundant but LIP1 is essential. Here we show that 4Delta (lag1Deltalac1Deltaypc1Deltaydc1Delta) cells devoid of all known endogenous ceramide synthesis pathways are unviable but can be rescued by the expression of Lass5, a mouse LAG1 homologue. Ceramide synthase activity of 4Delta.Lass5 cells only utilizes C16 and C18 fatty acids and does not require the help of Lip1p, an essential cofactor of Lag1p/Lac1p. HPLC-electrospray ionization-MS/MS analysis demonstrated that in IPCs (inositolphosphorylceramides) of 4Delta.Lass5, the very long chain fatty acids (C26 and C24) account for <1% instead of the normal >97%. Notwithstanding, IPCs incorporated into glycosylphosphatidylinositol anchors of 4Delta.Lass5 show normal mobility on TLC and the ceramide- and raft-dependent traffic of Gas1p (glycophospholipid-anchored surface protein) from endoplasmic reticulum to Golgi remains almost normal. Moreover, the biosynthesis of C24:0 fatty acids remains essential. Thus, C(24:0) and dihydrosphingosine are both necessary for survival of yeast cells even if they utilize C16 and C18 fatty acids for sphingolipid biosynthesis.

摘要

超长链脂肪酸(VLCFAs)的合成以及二氢鞘氨醇(DHS)的生物合成对酿酒酵母都至关重要。大部分VLCFAs和DHS被Lag1p(寿命保证基因1)/Lac1p(寿命保证基因同源物1)/Lip1p(Lag1p/Lac1p相互作用蛋白)神经酰胺合酶用于神经酰胺合成。LAG1和LAC1功能冗余,但LIP1是必需的。在此我们表明,缺乏所有已知内源性神经酰胺合成途径的4Delta(lag1Deltalac1Deltaypc1Deltaydc1Delta)细胞无法存活,但可通过表达小鼠LAG1同源物Lass5来挽救。4Delta.Lass5细胞的神经酰胺合酶活性仅利用C16和C18脂肪酸,且不需要Lag1p/Lac1p的必需辅助因子Lip1p的帮助。高效液相色谱 - 电喷雾电离 - 串联质谱分析表明,在4Delta.Lass5的肌醇磷酸神经酰胺(IPCs)中,超长链脂肪酸(C26和C24)占比不到1%,而非正常的>97%。尽管如此,掺入4Delta.Lass5糖基磷脂酰肌醇锚中的IPCs在薄层层析上显示出正常的迁移率,并且Gas1p(糖磷脂锚定表面蛋白)从内质网到高尔基体的神经酰胺和筏依赖性运输几乎保持正常。此外,C24:0脂肪酸的生物合成仍然是必需的。因此,即使酵母细胞利用C16和C18脂肪酸进行鞘脂生物合成,C(24:0)和二氢鞘氨醇对于酵母细胞的存活都是必需的。

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