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Amino acids regulate the intracellular trafficking of the general amino acid permease of Saccharomyces cerevisiae

机译:氨基酸调节酿酒酵母一般氨基酸通透酶的细胞内运输

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摘要

The delivery to the plasma membrane of the general amino acid permease, Gap1p, of Saccharomyces cerevisiae is regulated by the quality of the nitrogen source in the growth medium. In an effort to define how different nitrogen sources control Gap1p sorting, we find that mutations in GDH1 and GLN1 that decrease the flux through the glutamate and glutamine synthesis pathways result in increased Gap1p sorting to the plasma membrane. Conversely, deletion of MKS1, which increases glutamate and glutamine synthesis, decreases Gap1p sorting to the plasma membrane. Glutamate and glutamine are not unusual in their ability to regulate Gap1p sorting, because the addition of all natural amino acids and many amino acid analogs to the growth medium results in increased Gap1p sorting to the vacuole. Importantly, amino acids have the capacity to signal Gap1p sorting to the vacuole regardless of whether they can be used as a source of nitrogen. Finally, we show that rapamycin does not affect Gap1p sorting, indicating that Gap1p sorting is not directly influenced by the TOR pathway. Together, these data show that amino acids are a signal for sorting Gap1p to the vacuole and imply that the nitrogen-regulated Gap1p sorting machinery responds to amino acid-like compounds rather than to the overall nutritional status associated with growth on a particular nitrogen source.
机译:酿酒酵母的一般氨基酸通透酶Gap1p向质膜的传递受生长培养基中氮源的质量调节。为了确定不同的氮源如何控制Gap1p分选,我们发现GDH1和GLN1中的突变会降低通过谷氨酸和谷氨酰胺合成途径的通量,从而导致Gap1p分选到质膜上。相反,MKS1的缺失会增加谷氨酸盐和谷氨酰胺的合成,从而降低了对质膜的Gap1p分选。谷氨酸和谷氨酰胺调节Gap1p分选的能力并不罕见,因为在生长培养基中添加所有天然氨基酸和许多氨基酸类似物会导致空泡中Gap1p分选的增加。重要的是,氨基酸具有将Gap1p分选通知液泡的能力,无论它们是否可用作氮源。最后,我们显示雷帕霉素不影响Gap1p排序,表明Gap1p排序不受TOR途径直接影响。总之,这些数据表明氨基酸是将Gap1p分选到液泡的信号,这意味着氮调节的Gap1p分选机制对氨基酸样化合物有反应,而不是对特定氮源上生长相关的总体营养状况的反应。

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