TEFM facilitates transition from RNA synthesis to DNA synthesis at H-strand replication origin of mtDNA.

TEFM 促进线粒体 DNA H 链复制起点处从 RNA 合成向 DNA 合成的过渡

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作者:Matsuda Shigeru, Nakayama Masunari, Do Yura, Ishiuchi Takashi, Yagi Mikako, Wanrooij Sjoerd, Nakada Kazuto, Wei Fan-Yan, Ichiyanagi Kenji, Sasaki Hiroyuki, Kang Dongchon, Yasukawa Takehiro
Transcription of human mitochondrial DNA (mtDNA) begins from specific transcription promoters. In strand-asynchronous mtDNA replication, transcripts from the light-strand promoter serve as primers for leading-strand synthesis at the origin of the H-strand replication (O(H)). A 7S DNA strand, a presumed aborted replication product, is also synthesized from O(H). Transition from RNA synthesis to DNA synthesis at O(H) is crucial for balancing replication with transcription, yet the mechanism remains unclear. Herein, we examine the role of mitochondrial transcription elongation factor (TEFM) in this process. TEFM knockout results in decreased 7S DNA, strand-asynchronous replication intermediates, and mtDNA copy number, all of which are concordant with downregulation of RNA-to-DNA transition at O(H). Conversely, levels of tRNAs encoded near transcription promoters increase, indicating enhanced transcription initiation frequency. Taken together, we propose that, in addition to conferring processivity to the mitochondrial RNA polymerase, TEFM plays a crucial role in maintaining the balance between mitochondrial transcription and replication.

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