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Negative regulation of mitochondrial transcription by mitochondrial topoisomerase I

机译:线粒体拓扑异构酶I对线粒体转录的负调控

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Mitochondrial topoisomerase I is a genetically distinct mitochondria-dedicated enzyme with a crucial but so far unknown role in the homeostasis of mitochondrial DNA metabolism. Here, we present data suggesting a negative regulatory function in mitochondrial transcription or transcript stability. Deficiency or depletion of mitochondrial topoisomerase I increased mitochondrial transcripts, whereas overexpression lowered mitochondrial transcripts, depleted respiratory complexes I, III and IV, decreased cell respiration and raised superoxide levels. Acute depletion of mitochondrial topoisomerase I triggered neither a nuclear mito-biogenic stress response nor compensatory topoisomerase II beta upregulation, suggesting the concomitant increase in mitochondrial transcripts was due to release of a local inhibitory effect. Mitochondrial topoisomerase I was co-immunoprecipitated with mitochondrial RNA polymerase. It selectively accumulated and rapidly exchanged at a subset of nucleoids distinguished by the presence of newly synthesized RNA and/or mitochondrial RNA polymerase. The inactive Y559F-mutant behaved similarly without affecting mitochondrial transcripts. In conclusion, mitochondrial topoisomerase I dampens mitochondrial transcription and thereby alters respiratory capacity. The mechanism involves selective association of the active enzyme with transcriptionally active nucleoids and a direct interaction with mitochondrial RNA polymerase. The inhibitory role of topoisomerase I in mitochondrial transcription is strikingly different from the stimulatory role of topoisomerase I in nuclear transcription.
机译:线粒体拓扑异构酶I是一种遗传上独特的线粒体专用酶,在线粒体DNA代谢的稳态中起着至关重要但至今未知的作用。在这里,我们提出的数据表明线粒体转录或转录本稳定性的负调节功能。线粒体拓扑异构酶I的缺乏或耗竭增加了线粒体的转录本,而过表达降低了线粒体的转录本,减少了呼吸道复合体I,III和IV,减少了细胞的呼吸作用并提高了超氧化物水平。线粒体拓扑异构酶I的急性耗竭既不会引起核线粒体生物应激反应,也不会引起代偿性拓扑异构酶IIβ上调,这表明线粒体转录本的同时增加是由于释放了局部抑制作用。线粒体拓扑异构酶I与线粒体RNA聚合酶共免疫沉淀。它选择性地积累并迅速交换了新合成的RNA和/或线粒体RNA聚合酶的存在而区别出的一个核苷子集。无效的Y559F突变体的行为类似,但不影响线粒体转录本。总之,线粒体拓扑异构酶I抑制线粒体转录,从而改变呼吸能力。该机制涉及活性酶与转录活性核苷酸的选择性缔合以及与线粒体RNA聚合酶的直接相互作用。拓扑异构酶I在线粒体转录中的抑制作用与拓扑异构酶I在核转录中的刺激作用显着不同。

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