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新合成的质膜ATP酶转运至酵母细胞表面需要合成带有极长链脂肪酸的鞘脂类,但不需要麦角固醇。

Synthesis of sphingolipids with very long chain fatty acids but not ergosterol is required for routing of newly synthesized plasma membrane ATPase to the cell surface of yeast.

作者信息

Gaigg Barbara, Timischl Birgit, Corbino Linda, Schneiter Roger

机构信息

Division of Biochemistry, University of Fribourg, Chemin du Musée 5, CH-1700 Fribourg, Switzerland.

出版信息

J Biol Chem. 2005 Jun 10;280(23):22515-22. doi: 10.1074/jbc.M413472200. Epub 2005 Apr 6.

Abstract

The proton pumping H(+)-ATPase, Pma1p, is an abundant and very long-lived polytopic protein of the Saccharomyces cerevisiae plasma membrane. Pma1p constitutes a major cargo of the secretory pathway and thus serves as an excellent model to study plasma membrane biogenesis. We have previously shown that newly synthesized Pma1p is mistargeted to the vacuole in an elo3Delta mutant that affects the synthesis of the ceramide-bound C26 very long chain fatty acid (Eisenkolb, M., Zenzmaier, C., Leitner, E., and Schneiter, R. (2002) Mol. Biol. Cell 13, 4414-4428) and now describe a more detailed analysis of the role of lipids in Pma1p biogenesis. Remarkably, a block at various steps of sterol biosynthesis, a complete block in sterol synthesis, or the substitution of internally synthesized ergosterol by externally supplied ergosterol or even by cholesterol does not affect Pma1p biogenesis or its association with detergent-resistant membrane domains (lipid "rafts"). However, a block in sphingolipid synthesis or any perturbation in the synthesis of the ceramide-bound C26 very long chain fatty acid results in mistargeting of newly synthesized Pma1p to the vacuole. Mistargeting correlates with a lack of newly synthesized Pma1p to acquire detergent resistance, suggesting that sphingolipids with very long acyl chains affect sorting of Pma1p to the cell surface.

摘要

质子泵H(+)-ATP酶Pma1p是酿酒酵母质膜中一种丰富且寿命很长的多跨膜蛋白。Pma1p是分泌途径的主要货物,因此是研究质膜生物发生的优秀模型。我们之前已经表明,在影响神经酰胺结合的C26超长链脂肪酸合成的elo3Δ突变体中,新合成的Pma1p会错误定位到液泡中(艾森科尔布,M.,曾兹迈尔,C.,莱特纳,E.,和施内特,R.(2002年)《分子生物学细胞》13,4414 - 4428),现在我们描述了对脂质在Pma1p生物发生中作用的更详细分析。值得注意的是,在甾醇生物合成的各个步骤受阻、甾醇合成完全受阻,或者用外部供应的麦角甾醇甚至胆固醇替代内部合成的麦角甾醇,都不会影响Pma1p的生物发生或其与抗去污剂膜结构域(脂质“筏”)的结合。然而,鞘脂合成受阻或神经酰胺结合的C26超长链脂肪酸合成中的任何扰动都会导致新合成的Pma1p错误定位到液泡中。错误定位与新合成的Pma1p缺乏获得抗去污剂能力相关,这表明具有非常长酰基链的鞘脂会影响Pma1p向细胞表面的分选。

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