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Co-regulation of yeast purine and phosphate pathways in response to adenylic nucleotide variations

机译:响应腺苷酸核苷酸变异的酵母嘌呤和磷酸盐途径的共调控

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摘要

Adenylate kinase (Adk1p) is a pivotal enzyme in both energetic and adenylic nucleotide metabolisms. In this paper, using a transcriptomic analysis, we show that the lack of Adk1p strongly induced expression of the PHO and ADE genes involved in phosphate utilization and AMP de novo biosynthesis respectively. Isolation and characterization of adk1 point mutants affecting PHO5 expression revealed that all these mutations also severely affected Adk1p catalytic activity, as well as PHO84 and ADE1 transcription. Furthermore, overexpression of distantly related enzymes such as human adenylate kinase or yeast UMP kinase was sufficient to restore regulation. These results demonstrate that adenylate kinase catalytic activity is critical for proper regulation of the PHO and ADE pathways. We also establish that adk1 deletion and purine limitation have similar effects on both adenylic nucleotide pool and PHO84 or ADE17 expression. Finally, we show that, in the adk1 mutant, upregulation of ADE1 depends on synthesis of the previously described effector(s) (S)AICAR ((N-succinyl)-5-aminoimidazol-4-carboxamide ribotide), while upregulation of PHO84 necessitates the Spl2p positive regulator. This work reveals that adenylic nucleotide availability is a key signal used by yeast to co-ordinate phosphate utilization and purine synthesis.
机译:腺苷酸激酶(Adk1p)是能量和腺苷酸代谢中的关键酶。在本文中,使用转录组学分析,我们表明缺乏Adk1p强烈诱导了分别参与磷酸盐利用和AMP从头生物合成的PHO和ADE基因的表达。影响PHO5表达的adk1点突变体的分离和鉴定表明,所有这些突变也严重影响了Adk1p催化活性以及PHO84和ADE1转录。此外,远相关酶例如人腺苷酸激酶或酵母UMP激酶的过表达足以恢复调节。这些结果表明,腺苷酸激酶的催化活性对于正确调节PHO和ADE途径至关重要。我们还建立了adk1缺失和嘌呤限制对腺苷酸核苷酸库和PHO84或ADE17表达都有相似的影响。最后,我们显示,在adk1突变体中,ADE1的上调取决于先前描述的效应子(S)AICAR((N-琥珀酰基)-5-氨基咪唑-4-羧酰胺核糖核苷酸)的合成,而PHO84的上调需要Spl2p正调节器。这项工作表明腺苷核苷酸的可用性是酵母用来协调磷酸盐利用和嘌呤合成的关键信号。

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