Molecular Physiology of the Cell, Université Libre de Bruxelles (ULB), Biopark, Gosselies, Belgium.
Métabolisme des micro-organismes modèles, LABIRIS, Brussels, Belgium.
PLoS Genet. 2020 Aug 10;16(8):e1008966. doi: 10.1371/journal.pgen.1008966. eCollection 2020 Aug.
The vacuole of the yeast Saccharomyces cerevisiae plays an important role in nutrient storage. Arginine, in particular, accumulates in the vacuole of nitrogen-replete cells and is mobilized to the cytosol under nitrogen starvation. The arginine import and export systems involved remain poorly characterized, however. Furthermore, how their activity is coordinated by nitrogen remains unknown. Here we characterize Vsb1 as a novel vacuolar membrane protein of the APC (amino acid-polyamine-organocation) transporter superfamily which, in nitrogen-replete cells, is essential to active uptake and storage of arginine into the vacuole. A shift to nitrogen starvation causes apparent inhibition of Vsb1-dependent activity and mobilization of stored vacuolar arginine to the cytosol. We further show that this arginine export involves Ypq2, a vacuolar protein homologous to the human lysosomal cationic amino acid exporter PQLC2 and whose activity is detected only in nitrogen-starved cells. Our study unravels the main arginine import and export systems of the yeast vacuole and suggests that they are inversely regulated by nitrogen.
酵母酿酒酵母的液泡在营养物质储存中起着重要作用。特别是精氨酸在氮充足的细胞中积累在液泡中,并在氮饥饿下向细胞质中动员。然而,涉及的精氨酸输入和输出系统仍然特征描述很差。此外,其活性如何被氮协调仍然未知。在这里,我们将 Vsb1 表征为 APC(氨基酸-多胺-有机阳离子)转运蛋白超家族的新型液泡膜蛋白,在氮充足的细胞中,它对于精氨酸的主动摄取和储存到液泡中是必需的。向氮饥饿的转变导致明显抑制 Vsb1 依赖性活性和储存的液泡精氨酸向细胞质的动员。我们进一步表明,这种精氨酸输出涉及 Ypq2,一种与人类溶酶体阳离子氨基酸输出蛋白 PQLC2 同源的液泡蛋白,其活性仅在氮饥饿的细胞中检测到。我们的研究揭示了酵母液泡的主要精氨酸输入和输出系统,并表明它们受氮的反向调节。