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Eukaryotic Elongation Factor 3 Protects

机译:真核伸长因子3保护

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摘要

Translation is a core process of cellular protein homeostasis and, thus, needs to be tightly regulated. The production of newly synthesized proteins adapts to the current needs of the cell, including the response to conditions of oxidative stress. Overall protein synthesis decreases upon oxidative stress. However, the selective production of proteins is initiated to help neutralize stress conditions. In contrast to higher eukaryotes, fungi require three translation elongation factors, eEF1, eEF2, and eEF3, for protein synthesis. eEF1 and eEF2 are evolutionarily conserved, but they alone are insufficient for the translation elongation process. eEF3 is encoded by two paralogous genes, YEF3 and HEF3. However, only YEF3 is essential in yeast, whereas the function of HEF3 remains unknown. To elucidate the cellular function of Hef3p, we used cells that were depleted of HEF3 and treated with H2O2 and analyzed the growth of yeast, global protein production, and protein levels. We found that HEF3 is necessary to withstand oxidative stress conditions, suggesting that Hef3p is involved in the selective production of proteins that are necessary for defense against reactive oxygen species.
机译:翻译是一种细胞蛋白质稳态的核心过程,因此需要紧密调节。新合成的蛋白质的产生适应电池的当前需要,包括对氧化应激条件的响应。整体蛋白质合成在氧化应激上降低。然而,启动蛋白质的选择性生产以帮助中和应力条件。与较高的真核生物相比,真菌需要三种翻译伸长因子,EEF1,EEF2和EEF3,用于蛋白质合成。 EEF1和EEF2进化地保守,但它们仅对翻译伸长过程不足。 EEF3由两个副潜胶基因,YEF3和HEF3编码。然而,只有YEF3在酵母中是必需的,而HEF3的功能仍然未知。为了阐明HEF3P的细胞功能,我们使用HEF3耗尽并用H2O2处理并分析酵母,全球蛋白质产生和蛋白质水平的生长。我们发现HEF3是耐受氧化应激条件的必要条件,表明HEF3P参与选择性生产蛋白质,这些蛋白质是防御反应性氧物种所需的。

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