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Intracellular trafficking and ubiquitination of the Schizosaccharomyces pombe amino acid permease Aat1p

机译:细胞内的贩运和泛素化的Schizosaccharomyces Pombe氨基酸允许AAT1P

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In Schizosaccharomyces pombe, neither intracellular sorting nor ubiquitination of amino acid permeases is well understood. In the present study, we show that intracellular sorting of the amino acid permease Aat1p in S. pombe depends on the presence of a nitrogen source in the growth medium. Under nitrogen-sufficient conditions, Aat1p appeared to be stably localized at the Golgi apparatus. In contrast, under nitrogen-insufficient conditions, Aat1p was sorted to the plasma membrane. Over time, plasma membrane-localized Aat1p was internalized and sorted to the lumen of the vacuole, where it was degraded. Sorting of Aat1p to the vacuolar lumen was dependent on the ESCRT (endosomal sorting complex required for transport) complex, which is required for formation of the multivesicular body. S. pombe has three genes (pub1+, pub2+ and pub3+) that are homologous to the ubiquitin ligase RSP5. Under nitrogen-sufficient conditions, Aat1–GFP was missorted to the plasma membrane in pub1Δ cells and ubiquitinated Aat1p was not detected. These results suggest that Pub1p-mediated ubiquitination is required for retention of Aat1 at the Golgi under nitrogen-sufficient conditions. The Aat1p lysine mutant Aat1K18, 26, 27 was completely missorted to the plasma membrane under nitrogen-rich conditions. Furthermore, Aat1K4, 18R, Aat1K4, 26, 27R and Aat1K18, 26, 27K mutants were severely blocked in endocytosis. These results indicate that ubiquitination is an important determinant for localization and regulation of the Aat1p permease in S. pombe.
机译:在Schizosaccharomyces Pombe,既不是氨基酸透析的细胞内分选和泛素都很好地理解。在本研究中,我们表明氨基酸吹气AAT1P在S.Pombe中的细胞内分选取决于生长培养基中的氮源。在氮气充足的条件下,AAT1P似乎在GOLGI设备处稳定定位。相反,在氮气不足的条件下,将AAT1P分选到质膜。随着时间的推移,血浆膜局部化AAT1p内化并将其分类到液泡的内腔,其中降解。 AAT1P对真空腔的分选依赖于ESCRT(转运所需的内体分选复合物)复合物,这是形成多重体的形成。 S.Pombe有三种基因(PUB1 +,PUB2 +和PUB3 +),其与遍突粘蛋白连接酶RSP5同源。在氮气充足的条件下,AAT1-GFP在PUB1δ细胞中的质膜中被释放,并且未检测到普发染色的AAT1P。这些结果表明,在氮气充分条件下,需要在GOLGI下保留AAT1所需的泛素化。在富含氮气条件下,AAT1P赖氨酸突变体AAT1K18,26,27完全被释放到质膜。此外,AAT1K4,18R,AAT1K4,26,27R和AAT1K18,26,27K突变体在内吞作用中被严重阻断。这些结果表明,泛素化是局部化和调节S.Pombe允许的重要决定因素。

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