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Cytosolic translational responses differ under conditions of severe short-term and long-term mitochondrial stress

机译:在严重短期和长期线粒体压力的条件下细胞溶质转化反应不同

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摘要

Previous studies demonstrated that cells inhibit protein synthesis as a compensatory mechanism for mitochondrial dysfunction. Protein synthesis can be attenuated by 1) the inhibition of mTOR kinase, which results in a decrease in the phosphorylation of S6K1 and 4E-BP1 proteins, and 2) an increase in the phosphorylation of eIF2 alpha protein. The present study investigated both of these pathways under conditions of short-term acute and long-term mitochondrial stress. Short-term responses were triggered in mammalian cells by treatment with menadione, antimycin A, or CCCP. Long-term mitochondrial stress was induced by prolonged treatment with menadione or rotenone and expression of genetic alterations, such as knocking down the MIA40 oxidoreductase or knocking out NDUFA11 protein. Short-term menadione, antimycin A, or CCCP cell treatment led to the inhibition of protein synthesis, accompanied by a decrease in mTOR kinase activity, an increase in the phosphorylation of eIF2 alpha (Ser51), and an increase in the level of ATF4 transcription factor. Conversely, long-term stress led to a decrease in eIF2 alpha (Ser51) phosphorylation and ATF4 expression and to an increase in S6K1 (Thr389) phosphorylation. Thus, under long-term mitochondrial stress, cells trigger longlasting adaptive responses for protection against excessive inhibition of protein synthesis.
机译:以前的研究表明,细胞抑制蛋白质合成作为线粒体功能障碍的补偿机制。蛋白质合成可以通过1)抑制mTOR激酶,这导致S6K1和4E-BP1蛋白的磷酸化降低,2)eIF2α蛋白的磷酸化增加。本研究在短期急性和长期线粒体应激的条件下研究了这些途径。通过用男女淋烯酮,抗霉素A或CCCP治疗,在哺乳动物细胞中触发短期反应。通过延长植物或旋转酮的延长治疗和遗传改变的表达诱导长期线粒体应激,例如敲击MIA40氧化还原酶或敲除NDUFA11蛋白。短期植物,抗霉素A或CCCP细胞处理导致蛋白质合成的抑制,伴随着MTOR激酶活性的降低,eIF2α的磷酸化增加(SER51),以及ATF4转录水平的增加因素。相反,长期应力导致EIF2α(SER51)磷酸化和ATF4表达的减少,并增加S6K1(THR389)磷酸化。因此,在长期线粒体应激下,细胞触发了长拉伸适应性反应,以防止过度抑制蛋白质合成。

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