Department of Bioscience and Biotechnology, Faculty of Agriculture, Kyushu University, Hakozaki 6-10-1, Fukuoka 812-8581, Japan.
Department of Chemistry, Faculty of Sciences, Kyushu University, Hakozaki 6-10-1, Fukuoka 812-8581, Japan.
Microbiology (Reading). 2012 May;158(Pt 5):1219-1228. doi: 10.1099/mic.0.056184-0. Epub 2012 Feb 9.
In Saccharomyces (Sacc.) cerevisiae, the final step of the complex sphingolipid biosynthetic pathway requires Ipt1p for synthesis of mannosyldiinositol phosphorylceramide [M(IP)(2)C]. No fission yeast equivalent to Ipt1p has been found in the Schizosaccharomyces (Schiz.) pombe genome, and the most abundant complex sphingolipid is mannosylinositol phosphorylceramide. To examine the effect of expressing Sacc. cerevisiae IPT1 (ScIPT1) in Schiz. pombe, the ScIPT1 gene was cloned into an inducible fission yeast integrative vector and expressed in wild-type Schiz. pombe. In the Schiz. pombe ScIPT1-expressing cells, M(IP)(2)C was detected, indicating that ScIpt1p functions in M(IP)(2)C synthesis in Schiz. pombe. Expression of ScIPT1 caused pleiotropic phenotypes, including aberrant morphology and mislocalization of ergosterols in the plasma membrane. Furthermore, growth of Schiz. pombe was severely impaired. We analysed the sphingolipid composition of ScIPT1-expressing cells following a prolonged lag phase, and found that M(IP)(2)C was not synthesized, indicating that Ipt1p had been inactivated. GFP-tagged ScIpt1 localized primarily in the Golgi apparatus in wild-type Schiz. pombe. Over time, ScIpt1p was eventually transported to the vacuolar lumen through the multivesicular body pathway. These results indicate that M(IP)(2)C is toxic to Schiz. pombe and that fission yeast possesses an unknown mechanism to effectively extrude toxic sphingolipids from cells.
在酿酒酵母(Saccharomyces cerevisiae)中,复杂的鞘脂生物合成途径的最后一步需要 Ipt1p 来合成甘露糖基二肌醇磷酸神经酰胺 [M(IP)(2)C]。在裂殖酵母(Schizosaccharomyces pombe)基因组中尚未发现与 Ipt1p 等效的蛋白质,并且最丰富的复杂鞘脂是甘露糖基肌醇磷酸神经酰胺。为了研究在裂殖酵母中表达酿酒酵母 Ipt1(ScIPT1)的影响,将 ScIPT1 基因克隆到可诱导的裂殖酵母整合载体中,并在野生型裂殖酵母中表达。在裂殖酵母 ScIPT1 表达细胞中,检测到 M(IP)(2)C,表明 ScIpt1p 在裂殖酵母中参与 M(IP)(2)C 的合成。ScIPT1 的表达引起了多种表型,包括形态异常和质膜中麦角固醇的定位错误。此外,裂殖酵母的生长受到严重损害。在延长的迟滞期后,我们分析了 ScIPT1 表达细胞的鞘脂组成,发现未合成 M(IP)(2)C,表明 Ipt1p 已失活。GFP 标记的 ScIpt1 主要定位于野生型裂殖酵母的高尔基体中。随着时间的推移,ScIpt1p 最终通过多泡体途径被运送到液泡腔。这些结果表明 M(IP)(2)C 对裂殖酵母有毒,并且裂殖酵母具有将有毒鞘脂有效排出细胞的未知机制。