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Molecular machinery for non-vesicular trafficking of ceramide

机译:非囊泡性神经酰胺贩运的分子机制

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Synthesis and sorting of lipids are essential for membrane biogenesis; however, the mechanisms underlying the transport of membrane lipids remain little understood. Ceramide is synthesized at the endoplasmic reticulum and translocated to the Golgi compartment for conversion to sphingomyelin. The main pathway of ceramide transport to the Golgi is genetically impaired in a mammalian mutant cell line, LY-A. Here we identify CERT as the factor defective in LY-A cells. CERT, which is identical to a splicing variant of Goodpasture antigen-binding protein, is a cytoplasmic protein with a phosphatidylinositol-4-monophosphate-binding (PtdIns4P) domain and a putative domain for catalysing lipid transfer. In vitro assays show that this lipid-transfer-catalysing domain specifically extracts ceramide from phospholipid bilayers. CERT expressed in LY-A cells has an amino acid substitution that destroys its PtdIns4P-binding activity, thereby impairing its Golgi-targeting function. We conclude that CERT mediates the intracellular trafficking of ceramide in a non-vesicular manner.
机译:脂质的合成和分选对于膜生物发生至关重要。然而,膜脂质运输的基本机制仍知之甚少。神经酰胺在内质网合成,并转移到高尔基体,转化为鞘磷脂。神经酰胺转运到高尔基体的主要途径在哺乳动物突变细胞系LY-A中遗传受损。在这里,我们确定CERT为LY-A细胞中的缺陷因子。 CERT与Goodpasture抗原结合蛋白的剪接变体相同,是一种胞质蛋白,具有磷脂酰肌醇-4-单磷酸结合(PtdIns4P)结构域和推定的结构域,可催化脂质转移。体外测定表明,该脂质转移催化结构域特异性地从磷脂双层提取神经酰胺。在LY-A细胞中表达的CERT具有一个氨基酸取代基,破坏了其PtdIns4P结合活性,从而削弱了其高尔基体靶向功能。我们得出结论,CERT以非水泡的方式介导了神经酰胺的细胞内运输。

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