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Transcription profiling suggests that mitochondrial topoisomerase IB acts as a topological barrier and regulator of mitochondrial DNA transcription

  1. Author:
    Dalla Rosa, Ilaria
    Zhang, Hongliang
    Khiati, Salim
    Wu, Xiaolin
    Pommier, Yves
  2. Author Address

    Laboratory of Molecular Pharmacology, Developmental Therapeutics Branch, Center for Cancer Research, United States., Laboratory of Molecular Technology, Frederick National Laboratory for Cancer Research, United States., Laboratory of Molecular Pharmacology, Developmental Therapeutics Branch, Center for Cancer Research, United States; yves.pommier@nih.gov.,
    1. Year: 2017
    2. Date: Dec 8
    3. Epub Date: 2017 10 11
  1. Journal: Journal of Biological Chemistry
    1. 292
    2. 49
    3. Pages: 20162-20172
  2. Type of Article: Article
  1. Abstract:

    Mitochondrial DNA (mtDNA) is essential for cell viability because it encodes subunits of the respiratory chain complexes. Mitochondrial topoisomerase IB (TOP1MT) facilitates mtDNA replication by removing DNA topological tensions produced during mtDNA transcription, but appears to be dispensable. To test whether cells lacking TOP1MT have aberrant mtDNA transcription, we performed mitochondrial transcriptome profiling. To that end, we designed and implemented a customized tiling array, which enabled genome-wide, strand-specific, and simultaneous detection of all mitochondrial transcripts. Our technique revealed that TOP1MT KO mouse cells have a normal processing of the mitochondrial transcripts, but that protein-coding mitochondrial transcripts are elevated. Moreover, we found discrete long noncoding RNAs produced by H-strand transcription and encompassing the noncoding regulatory region of mtDNA in human and murine cells and tissues. Of note, these noncoding RNAs were strongly upregulated in the absence of TOP1MT. In contrast, 7S DNA, produced by mtDNA replication, was reduced in the TOP1MT KO cells. We propose that the long noncoding RNA species in the D-loop region are generated by the extension of H-strand transcripts beyond their canonical stop site and that TOP1MT acts as a topological barrier and regulator for mtDNA transcription and D-loop formation. Copyright © 2017, The American Society for Biochemistry and Molecular Biology.

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External Sources

  1. DOI: 10.1074/jbc.M117.815241
  2. PMID: 29021209
  3. PMCID: PMC5724003
  4. WOS: 000417696400021
  5. PII : M117.815241

Library Notes

  1. Fiscal Year: FY2017-2018
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