首页> 外文OA文献 >Amino Acid Signaling in Saccharomyces cerevisiae: a Permease-Like Sensor of External Amino Acids and F-Box Protein Grr1p Are Required for Transcriptional Induction of the AGP1 Gene, Which Encodes a Broad-Specificity Amino Acid Permease
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Amino Acid Signaling in Saccharomyces cerevisiae: a Permease-Like Sensor of External Amino Acids and F-Box Protein Grr1p Are Required for Transcriptional Induction of the AGP1 Gene, Which Encodes a Broad-Specificity Amino Acid Permease

机译:酿酒酵母中的氨基酸信号:外部氨基酸和F盒蛋白Grr1p的类似渗透酶的传感器对于AGP1基因的转录诱导是必需的,该基因编码一个广泛特异性的氨基酸渗透酶。

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摘要

The SSY1 gene of Saccharomyces cerevisiae encodes a member of a large family of amino acid permeases. Compared to the 17 other proteins of this family, however, Ssy1p displays unusual structural features reminiscent of those distinguishing the Snf3p and Rgt2p glucose sensors from the other proteins of the sugar transporter family. We show here that SSY1 is required for transcriptional induction, in response to multiple amino acids, of the AGP1 gene encoding a low-affinity, broad-specificity amino acid permease. Total noninduction of the AGP1 gene in the ssy1Δ mutant is not due to impaired incorporation of inducing amino acids. Conversely, AGP1 is strongly induced by tryptophan in a mutant strain largely deficient in tryptophan uptake, but it remains unexpressed in a mutant that accumulates high levels of tryptophan endogenously. Induction of AGP1 requires Uga35p(Dal81p/DurLp), a transcription factor of the Cys6-Zn2 family previously shown to participate in several nitrogen induction pathways. Induction of AGP1 by amino acids also requires Grr1p, the F-box protein of the SCFGrr1 ubiquitin-protein ligase complex also required for transduction of the glucose signal generated by the Snf3p and Rgt2p glucose sensors. Systematic analysis of amino acid permease genes showed that Ssy1p is involved in transcriptional induction of at least five genes in addition to AGP1. Our results show that the amino acid permease homologue Ssy1p is a sensor of external amino acids, coupling availability of amino acids to transcriptional events. The essential role of Grr1p in this amino acid signaling pathway lends further support to the hypothesis that this protein participates in integrating nutrient availability with the cell cycle.
机译:酿酒酵母的SSY1基因编码氨基酸渗透酶大家族的成员。与该家族的其他17种蛋白质相比,Ssy1p显示出不同寻常的结构特征,使人想起了Snf3p和Rgt2p葡萄糖传感器与糖转运蛋白家族其他蛋白质的区别。我们在这里显示SSY1是转录诱导的,响应多个氨基酸,编码低亲和力,广泛特异性氨基酸通透性的AGP1基因所需。 ssy1Δ突变体中AGP1基因完全不被诱导并不是由于诱导氨基酸掺入受损。相反,在色氨酸摄取严重不足的突变株中,色氨酸强烈诱导了AGP1的表达,但在内源性积累大量色氨酸的突变株中AGP1仍未表达。 AGP1的诱导需要Uga35p(Dal81p / DurLp),这是Cys6-Zn2家族的转录因子,以前被证明参与了几种氮诱导途径。氨基酸诱导AGP1也需要Grr1p,SCFGrr1泛素-蛋白连接酶复合物的F-box蛋白也需要转导由Snf3p和Rgt2p葡萄糖传感器产生的葡萄糖信号。氨基酸通透酶基因的系统分析表明,除了AGP1,Ssy1p还参与了至少五个基因的转录诱导。我们的结果表明,氨基酸渗透酶同源物Ssy1p是外部氨基酸的传感器,将氨基酸的可用性与转录事件偶联。 Grr1p在此氨基酸信号通路中的重要作用进一步支持了这种蛋白质参与将营养物质的利用与细胞周期整合在一起的假说。

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