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Beyond the unwinding: role of TOP1MT in mitochondrial translation

机译:超越展开:在线粒体翻译中的Top1MT的作用

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Mitochondria contain their own genome (mtDNA), encoding 13 proteins of the enzyme complexes of the oxidative phosphorylation. Synthesis of these 13 mitochondrial proteins requires a specific translation machinery, the mitoribosomes whose RNA components are encoded by the mtDNA, whereas more than 80 proteins are encoded by nuclear genes. It has been well established that mitochondrial topoisomerase I (TOP1MT) is important for mtDNA integrity and mitochondrial transcription as it prevents excessive mtDNA negative supercoiling and releases topological stress during mtDNA replication and transcription. We recently showed that TOP1MT also supports mitochondrial protein synthesis, and thus is critical for promoting tumor growth. Impaired mitochondrial protein synthesis leads to activation of the mitonuclear stress response through the transcription factor ATF4, and induces cytoprotective genes in order to prevent mitochondrial and cellular dysfunction. In this perspective, we highlight the novel role of TOP1MT in mitochondrial protein synthesis and as potential target for chemotherapy.
机译:线粒体含有自己的基因组(MTDNA),编码氧化磷酸化酶复合物的13个蛋白质。这13个线粒体蛋白的合成需要特定的翻译机械,其RNA组分由MTDNA编码的疏动机械,而大于80多种蛋白质被核基因编码。已经确定,线粒体拓扑异构酶I(TOP1MT)对于MTDNA完整性和线粒体转录很重要,因为它可以防止过量的MTDNA阴性超级录板并在MTDNA复制和转录期间释放拓扑应激。我们最近表明TOP1MT还支持线粒体蛋白质合成,因此对于促进肿瘤生长至关重要。受损的线粒体蛋白质合成导致通过转录因子ATF4激活分配的QualutColucol ressact响应,并诱导细胞保护基因以防止线粒体和细胞功能障碍。在这种观点中,我们突出了对线粒体蛋白质合成的TOP1MT的新颖作用以及化疗的潜在靶标。

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