Abe M, Nishida I, Minemura M, Qadota H, Seyama Y, Watanabe T, Ohya Y
Department of Integrated Biosciences, Graduate School of Frontier Science, University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
J Biol Chem. 2001 Jul 20;276(29):26923-30. doi: 10.1074/jbc.M102179200. Epub 2001 May 3.
1,3-beta-D-Glucan, a major filamentous component of the cell wall in the budding yeast Saccharomyces cerevisiae, is synthesized by 1,3-beta-glucan synthase (GS). Although a yeast gene whose product is required for GS activity in vitro, GNS1, was isolated and characterized, its role in GS function has remained unknown. In the current study we show that Deltagns1 cells accumulate a non-competitive and non-proteinous inhibitor(s) in the membrane fraction. Investigations of inhibitory activity on GS revealed that the inhibitor(s) is mainly present in the sphingolipid fraction. It is shown that Deltagns1 cells contain phytosphingosine (PHS), an intermediate in the sphingolipid biosynthesis, 30-fold more than wild-type cells do. The membrane fraction isolated from Deltasur2 cells contains an increased amount of dihydrosphingosine (DHS) and also exhibits reduced GS activity. Among constituents of the sphingolipid fraction, PHS and DHS show striking inhibition in a non-competitive manner. The intracellular level of DHS is much lower than that of PHS in wild-type cells, suggesting that PHS is the primary inhibitor of GS in vivo. The localization of PHS to the endoplasmic reticulum in wild-type cells coincides with that of the inhibitor(s) in Deltagns1 cells. Taken together, our results indicate that PHS is a potent inhibitor of yeast GS in vivo.
1,3-β-D-葡聚糖是出芽酵母酿酒酵母细胞壁的主要丝状成分,由1,3-β-葡聚糖合酶(GS)合成。尽管已分离并鉴定出一个其产物在体外对GS活性有需求的酵母基因GNS1,但其在GS功能中的作用仍不清楚。在当前研究中,我们发现缺失GNS1的细胞在膜组分中积累了一种非竞争性且非蛋白质类的抑制剂。对GS抑制活性的研究表明,该抑制剂主要存在于鞘脂组分中。结果显示,缺失GNS1的细胞所含的植物鞘氨醇(PHS),即鞘脂生物合成中的一种中间产物,比野生型细胞多30倍。从缺失SUR2的细胞中分离出的膜组分含有增加量的二氢鞘氨醇(DHS),并且其GS活性也降低。在鞘脂组分的成分中,PHS和DHS以非竞争性方式表现出显著抑制作用。在野生型细胞中,DHS的细胞内水平远低于PHS,这表明PHS是体内GS的主要抑制剂。野生型细胞中PHS在内质网的定位与缺失GNS1的细胞中抑制剂的定位一致。综上所述,我们的结果表明PHS在体内是酵母GS的一种有效抑制剂。