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Fat storage-inducing transmembrane (FIT or FITM) proteins are related to lipid phosphatase/phosphotransferase enzymes

机译:诱导脂肪存储的跨膜蛋白(FIT或FITM)与脂质磷酸酶/磷酸转移酶有关

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Fat storage-inducing transmembrane (FIT or FITM) proteins have been implicated in the partitioning of triacylglycerol to lipid droplets and the budding of lipid droplets from the ER. At the molecular level, the sole relevant interaction is that FITMs directly bind to triacyglycerol and diacylglycerol, but how they function at the molecular level is not known. Saccharomyces cerevisiae has two FITM homologues: Scs3p and Yft2p. Scs3p was initially identified because deletion leads to inositol auxotrophy, with an unusual sensitivity to addition of choline. This strongly suggests a role for Scs3p in phospholipid biosynthesis. Looking at the FITM family as widely as possible, we found that FITMs are widespread throughout eukaryotes, indicating presence in the last eukaryotic common ancestor. Protein alignments also showed that FITM sequences contain the active site of lipid phosphatase/phosphotransferase (LPT) enzymes. This large family transfers phosphate-containing headgroups either between lipids or in exchange for water. We confirmed the prediction that FITMs are related to LPTs by showing that single amino-acid substitutions in the presumptive catalytic site prevented their ability to rescue growth of the mutants on low inositol/high choline media when over-expressed. The substitutions also prevented rescue of other phenotypes associated with loss of FITM in yeast, including mistargeting of Opi1p, defective ER morphology, and aberrant lipid droplet budding. These results suggest that Scs3p, Yft2p and FITMs in general are LPT enzymes involved in an as yet unknown critical step in phospholipid metabolism.
机译:诱导脂肪存储的跨膜蛋白(FIT或FITM)与三酰基甘油分配到脂质小滴以及脂质小滴从ER萌芽有关。在分子水平上,唯一相关的相互作用是FITM直接与三酰甘油和二酰基甘油结合,但尚不清楚它们在分子水平上如何起作用。酿酒酵母具有两个FITM同源物:Scs3p和Yft2p。最初鉴定出Scs3p是因为缺失导致肌醇营养缺陷,对添加胆碱有异常的敏感性。这强烈暗示了Scs3p在磷脂生物合成中的作用。尽可能广泛地考察FITM家族,我们发现FITM遍及整个真核生物,表明存在于最后的真核共同祖先中。蛋白质比对还显示FITM序列包含脂质磷酸酶/磷酸转移酶(LPT)酶的活性位点。这个大家族在脂质之间或交换水时转移了含磷酸盐的头基。我们通过证明推定催化位点中的单个氨基酸取代阻止了它们在过表达时在低肌醇/高胆碱培养基上拯救突变体生长的能力,从而证实了FITM与LPT相关的预测。取代还阻止了与酵母中FITM丢失相关的其他表型的抢救,包括Opi1p的靶向错误,ER形态缺陷和脂质滴出芽异常。这些结果表明,Scs3p,Yft2p和FITM通常是参与磷脂代谢关键步骤的LPT酶。

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