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首页> 外文期刊>Molecular Microbiology >The oxidative stress response in yeast cells involves changes in the stability of Aft1 regulon mRNAs.
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The oxidative stress response in yeast cells involves changes in the stability of Aft1 regulon mRNAs.

机译:酵母细胞中的氧化应激反应涉及Aft1 regulon mRNA稳定性的变化。

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摘要

Saccharomyces cerevisiae can import iron through a high-affinity system consisting of the Ftr1/Fet3-mediated reductive pathway and the siderophore-mediated non-reductive one. Expression of components of the high-affinity system is controlled by the Aft1 transcriptional factor. In this study we show that, upon oxidative stress, Aft1 is transitorily internalized into the nucleus, followed by transcription activation of components of its regulon. In these conditions, the mRNA levels of the genes of the non-reductive pathway become increased, while those of FTR1 and FET3 remain low because of destabilization of the mRNAs. Consequently, the respective protein levels also remain low. Such mRNA destabilization is mediated by the general 5'-3' mRNA decay pathway and is independent of the RNA binding protein Cth2. Yeast cells are hypersensitive to peroxides in growth conditions where only the high-affinity reductive pathway is functional for iron assimilation. On the contrary, peroxide does not affect growth when iron uptake occurs exclusively through the non-reductive pathway. This reinforces the idea that upon oxidative stress S. cerevisiae cells redirect iron assimilation through the non-reductive pathway to minimize oxidative damage by the ferrous ions, which are formed during iron import through the Ftr1/Fet3 complexes.
机译:酿酒酵母可以通过由Ftr1 / Fet3介导的还原途径和铁载体介导的非还原途径组成的高亲和力系统进口铁。高亲和力系统组件的表达受Aft1转录因子控制。在这项研究中,我们表明,在氧化胁迫下,Aft1暂时内化到核中,然后转录激活其调控因子的成分。在这些情况下,非还原性途径的基因的mRNA水平升高,而FTR1和FET3的基因由于mRNA的不稳定而保持较低水平。因此,相应的蛋白质水平也保持较低。这种mRNA去稳定作用是由一般的5'-3'mRNA衰变途径介导的,并且独立于RNA结合蛋白Cth2。酵母细胞在生长条件下对过氧化物非常敏感,在生长条件下,只有高亲和力的还原途径才对铁的同化起作用。相反,当仅通过非还原途径吸收铁时,过氧化物不会影响生长。这强化了这样的想法,即在氧化应激后,酿酒酵母细胞通过非还原途径将铁同化而重新定向,以最大程度地减少铁离子通过Ftr1 / Fet3络合物导入铁时形成的亚铁离子的氧化损伤。

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