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Pah1p negatively regulates the expression of V-ATPase genes as well as vacuolar acidification

机译:PAH1P负调节V-ATP酶基因以及真空酸化的表达

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摘要

In yeast, PAH1 plays an important role in cell homeostasis and lipid biosynthesis. PAH1 encodes for the PA phosphatase, Pah1p, which is responsible for de novo TAG and phospholipid synthesis. It has been suggested that the lack of Pah1p causes irregular vacuolar morphology and dysfunctional V-ATPase pump activity. However, the molecular connection between Pahlp and V-ATPase activity has remained unclear. Through real-time PCR, we have shown that PAH1 is maximally induced at the stationary stage in the presence of inositol. We also found that vacuoles were less fragmented when PAH1 is maximally expressed. Subsequently, we observed that vacuoles from pah1 Delta cells were more acidic than those in WT cells. Furthermore, V-ATPase genes were upregulated in the absence of Pah1p. These results suggest that Pah1p plays an important role in vacuolar activity by negatively regulating the expression of V-ATPase genes. As such, we provide evidence to show the role of Pah1p in vacuolar acidification and fragmentation. (C) 2017 Elsevier Inc. All rights reserved.
机译:在酵母中,PAH1在细胞稳态和脂质生物合成中起重要作用。 PAH1编码PA磷酸酶,PAH1P,负责De Novo标签和磷脂合成。已经提出缺乏PAH1P导致不规则的真空形态和功能障碍V-ATP酶泵活性。然而,Pahlp和V-ATPase活性之间的分子连接仍然不清楚。通过实时PCR,我们已经表明,在肌醇存在下在固定阶段最大程度地诱导PAH1。我们还发现,当PAH1最大表达时,液泡较少。随后,我们观察到来自PAH1δ细胞的液泡比WT细胞中的耐酸更酸。此外,在没有PAH1P的情况下,上调V-ATP酶基因。这些结果表明,PAH1P通过对V-ATP酶基因的表达产生负面调节V-ATP酶基因的表达,在真空活性中起着重要作用。因此,我们提供了证据表明PAH1P在真空酸化和碎片中的作用。 (c)2017年Elsevier Inc.保留所有权利。

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