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Role of the DHH1 Gene in the Regulation of Monocarboxylic Acids Transporters Expression in Saccharomyces cerevisiae

机译:DHH1基因在酿酒酵母中单羧酸转运蛋白表达调控中的作用。

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摘要

Previous experiments revealed that DHH1, a RNA helicase involved in the regulation of mRNA stability and translation, complemented the phenotype of a Saccharomyces cerevisiae mutant affected in the expression of genes coding for monocarboxylic-acids transporters, JEN1 and ADY2 (Paiva S, Althoff S, Casal M, Leao C. FEMS Microbiol Lett, 1999, 170∶301–306). In wild type cells, JEN1 expression had been shown to be undetectable in the presence of glucose or formic acid, and induced in the presence of lactate. In this work, we show that JEN1 mRNA accumulates in a dhh1 mutant, when formic acid was used as sole carbon source. Dhh1 interacts with the decapping activator Dcp1 and with the deadenylase complex. This led to the hypothesis that JEN1 expression is post-transcriptionally regulated by Dhh1 in formic acid. Analyses of JEN1 mRNAs decay in wild-type and dhh1 mutant strains confirmed this hypothesis. In these conditions, the stabilized JEN1 mRNA was associated to polysomes but no Jen1 protein could be detected, either by measurable lactate carrier activity, Jen1-GFP fluorescence detection or western blots. These results revealed the complexity of the expression regulation of JEN1 in S. cerevisiae and evidenced the importance of DHH1 in this process. Additionally, microarray analyses of dhh1 mutant indicated that Dhh1 plays a large role in metabolic adaptation, suggesting that carbon source changes triggers a complex interplay between transcriptional and post-transcriptional effects.
机译:先前的实验表明,DHH1是一种参与基因调控的mRNA解旋酶,可补充酿酒酵母突变体的表型,该突变体受编码单羧酸转运蛋白JEN1和ADY2的基因表达的影响(Paiva S,Althoff S, Casal M,Leao C. FEMS Microbiol Lett,1999,170:301-306)。在野生型细胞中,已显示在葡萄糖或甲酸的存在下无法检测到JEN1的表达,而在乳酸的存在下可以诱导出JEN1的表达。在这项工作中,我们表明当甲酸用作唯一碳源时,JEN1 mRNA会在dhh1突变体中积累。 Dhh1与脱盖激活剂Dcp1和去甲腺苷酸酶复合物相互作用。这导致了一个假设,即甲酸中Dhh1在转录后调控JEN1表达。对野生型和dhh1突变菌株中JEN1 mRNA衰减的分析证实了这一假设。在这些条件下,稳定的JEN1 mRNA与多核糖体相关,但是通过可测量的乳酸载体活性,Jen1-GFP荧光检测或Western印迹检测不到Jen1蛋白。这些结果揭示了酿酒酵母中JEN1表达调控的复杂性,并证明了DHH1在此过程中的重要性。此外,dhh1突变体的微阵列分析表明,Dhh1在代谢适应中起着重要作用,表明碳源的变化触发了转录和转录后作用之间的复杂相互作用。

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