首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Modulation of Sphingolipid Metabolism by the Phosphatidylinositol-4-phosphate Phosphatase Sac1p through Regulation of Phosphatidylinositol in Saccharomyces cerevisiae
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Modulation of Sphingolipid Metabolism by the Phosphatidylinositol-4-phosphate Phosphatase Sac1p through Regulation of Phosphatidylinositol in Saccharomyces cerevisiae

机译:鞘脂对鞘脂代谢的调节。 调节磷酸磷脂酰肌醇-4-磷酸酶Sac1p 酵母菌中的磷脂酰肌醇 酿酒酵母

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摘要

Sphingolipids and phosphoinositides both play signaling roles in Saccharomyces cerevisiae. Although previous data indicate independent functions for these two classes of lipids, recent genetic studies have suggested interactions between phosphatidylinositol (PtdIns) phosphate effectors and sphingolipid biosynthetic enzymes. The present study was undertaken to further define the effects of phosphatidylinositol 4-phosphate (PtdIns(4)P) metabolism on cell sphingolipid metabolism. The data presented indicate that deletion of SAC1, a gene encoding a PtdIns(4)P phosphatase, increased levels of most sphingolipid species, including sphingoid bases, sphingoid base phosphates, and phytoceramide. In contrast, sac1Δ dramatically reduced inositol phosphosphingolipids, which result from the addition of a PtdIns-derived phosphoinositol head group to ceramides through Aur1p. Deletion of SAC1 decreased PtdIns dramatically in both steady-state and pulse labeling studies, suggesting that the observed effects on sphingolipids may result from modulation of the availability of PtdIns as a substrate for Aur1p. Supporting this hypothesis, acute attenuation of PtdIns(4)P production through Stt4p immediately increased PtdIns and subsequently reduced sphingoid bases. This reduction was overcome by the inhibition of Aur1p. Moreover, modulation of sphingoid bases through perturbation of PtdIns(4)P metabolism initiated sphingolipid-dependent biological effects, supporting the biological relevance for this route of regulating sphingolipids. These findings suggest that, in addition to potential signaling effects of PtdInsP effectors on sphingolipid metabolism, PtdIns kinases may exert substantial effects on cell sphingolipid profiles at a metabolic level through modulation of PtdIns available as a substrate for complex sphingolipid synthesis.
机译:鞘脂和磷酸肌醇在酿酒酵母中均起信号传导作用。尽管以前的数据表明这两类脂质具有独立的功能,但最近的遗传研究表明磷脂酰肌醇(PtdIns)磷酸效应子与鞘脂生物合成酶之间存在相互作用。进行本研究以进一步定义4-磷酸磷脂酰肌醇(PtdIns(4)P)代谢对细胞鞘脂代谢的影响。提供的数据表明,SAC1(一种编码PtdIns(4)P磷酸酶的基因)的缺失会增加大多数鞘脂类物质的水平,包括鞘氨醇碱,鞘氨醇碱磷酸酯和植物神经酰胺。相反,sac1Δ显着降低了肌醇磷酸鞘糖脂,这是由于通过Aur1p将PtdIns衍生的磷酸肌醇头基添加到神经酰胺中而导致的。 SAC1的删除在稳态和脉冲标记研究中均显着降低了PtdIns,这表明观察到的对鞘脂的影响可能是由于对PtdIns作为Aur1p底物的可用性的调节所致。支持该假说的是,通过Stt4p引起的PtdIns(4)P产生的急剧衰减会立即增加PtdIns和 随后减少了鞘鞘碱基。这种减少被克服了 抑制Aur1p。此外,通过以下方式调节类神经鞘碱基 PtdIns(4)P代谢的扰动引发鞘脂依赖性 生物效应,支持这种途径的生物学相关性 调节鞘脂。这些发现表明,除了 PtdInsP效应子对鞘脂代谢的潜在信号传导作用, PtdIns激酶可能在以下位置对细胞鞘脂谱产生实质性影响 通过调节PtdIns来代谢水平 复杂的鞘脂合成。

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