首页> 美国卫生研究院文献>Molecular and Cellular Biology >The Saccharomyces cerevisiae YLL012/YEH1 YLR020/YEH2 and TGL1 Genes Encode a Novel Family of Membrane-Anchored Lipases That Are Required for Steryl Ester Hydrolysis
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The Saccharomyces cerevisiae YLL012/YEH1 YLR020/YEH2 and TGL1 Genes Encode a Novel Family of Membrane-Anchored Lipases That Are Required for Steryl Ester Hydrolysis

机译:酿酒酵母YLL012 / YEH1YLR020 / YEH2和TGL1基因编码一种新型的膜固定脂肪酶这是甾族酯水解所必需的

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摘要

Sterol homeostasis in eukaryotic cells relies on the reciprocal interconversion of free sterols and steryl esters. The formation of steryl esters is well characterized, but the mechanisms that control steryl ester mobilization upon cellular demand are less well understood. We have identified a family of three lipases of Saccharomyces cerevisiae that are required for efficient steryl ester mobilization. These lipases, encoded by YLL012/YEH1, YLR020/YEH2, and TGL1, are paralogues of the mammalian acid lipase family, which is composed of the lysosomal acid lipase, the gastric lipase, and four novel as yet uncharacterized human open reading frames. Lipase triple-mutant yeast cells are completely blocked in steryl ester hydrolysis but do not affect the mobilization of triacylglycerols, indicating that the three lipases are required for steryl ester mobilization in vivo. Lipase single mutants mobilize steryl esters to various degrees, indicating partial functional redundancy of the three gene products. Lipase double-mutant cells in which the third lipase is expressed from the inducible GAL1 promoter have greatly reduced steady-state levels of steryl esters, indicating that overexpression of any of the three lipases is sufficient for steryl ester mobilization in vivo. The three yeast enzymes constitute a novel class of membrane-anchored lipases that differ in topology and subcellular localization.
机译:真核细胞中的甾醇稳态依赖于游离固醇和固醇酯的相互相互转化。固醇酯的形成已被很好地表征,但是对细胞需求时控制固醇酯动员的机制了解得很少。我们已经确定了酿酒酵母的三种脂肪酶家族,它们是有效动员甾醇酯所必需的。这些脂肪酶由YLL012 / YEH1,YLR020 / YEH2和TGL1编码,是哺乳动物酸性脂肪酶家族的旁系同源物,其由溶酶体酸性脂肪酶,胃脂肪酶和四种新颖的尚未公开的人类开放阅读框组成。脂肪酶三突变酵母细胞在甾醇酯水解中被完全封闭,但不影响三酰基甘油的动员,表明这三种脂肪酶是体内甾醇酯动员所必需的。脂肪酶单个突变体以不同程度动员甾醇酯,表明这三个基因产物的部分功能冗余。从诱导型GAL1启动子表达第三种脂肪酶的脂肪酶双突变细胞,其甾醇酯的稳态水平大大降低,这表明这三种脂肪酶中任何一种的过表达都足以在体内动员甾醇酯。这三种酵母酶构成了一类新型的膜锚定脂肪酶,它们在拓扑结构和亚细胞定位方面均不同。

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