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Metabolic determinants of cellular fitness dependent on mitochondrial reactive oxygen species

机译:依赖于线粒体反应性氧的细胞健身的代谢决定因素

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Mitochondria-derived reactive oxygen species (mROS) are required for the survival, proliferation, and metastasis of cancer cells. The mechanism by which mitochondrial metabolism regulates mROS levels to support cancer cells is not fully understood. To address this, we conducted a metabolism-focused CRISPR-Cas9 genetic screen and uncovered that loss of genes encoding subunits of mitochondrial complex I was deleterious in the presence of the mitochondria-targeted antioxidant mito-vitamin E (MVE). Genetic or pharmacologic inhibition of mitochondrial complex I in combination with the mitochondria-targeted antioxidants, MVE or MitoTEMPO, induced a robust integrated stress response (ISR) and markedly diminished cell survival and proliferation in vitro. This was not observed following inhibition of mitochondrial complex III. Administration of MitoTEMPO in combination with the mitochondrial complex I inhibitor phenformin decreased the leukemic burden in a mouse model of T cell acute lymphoblastic leukemia. Thus, mitochondrial complex I is a dominant metabolic determinant of mROS-dependent cellular fitness.
机译:癌细胞的存活,增殖和转移需要线粒体衍生的反应性氧物质(MRO)。线粒体代谢调节MRO水平以支持癌细胞的机制不完全理解。为了解决这个问题,我们进行了一种集中于代谢的CRISPR-CAS9遗传筛网,并发现在线粒体靶向抗氧化型尿氨酸 - 维生素E(MVE)存在下,对线粒体复合物的亚基进行有害的,揭示了编码线粒体复合物的亚基的基因丧失。线粒体复合物I与线粒体靶向抗氧化剂,MVE或MITOTEMPO组合的遗传或药理学抑制,诱导稳健的综合应力响应(ISR)并在体外显着降低细胞存活率和增殖。在抑制线粒体复合物III后未观察到这一点。与线粒体复合物I抑制剂苯甲酸的组合施用Mitotempo降低了T细胞急性淋巴细胞白血病小鼠模型中的白血病负担。因此,线粒体复合物I是MRO依赖性细胞适应度的主要代谢决定蛋白。

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