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Published on: May 10, 2020
Genotoxic stress increases cytoplasmic mitochondrial DNA editing by human APOBEC3 mutator enzymes at a single cell
Bianka Mussil1,2, Rodolphe Suspène1, Vincent Caval1
1Molecular Retrovirology Unit, Institut Pasteur, CNRS, UMR 3569, 28 rue du Dr. Roux, F-75724, Paris cedex 15, France.
Abstract:
Human cells are stressed by numerous mechanisms that can lead to leakage of mitochondrial DNA (mtDNA) to the cytoplasm and ultimately apoptosis. This agonist DNA constitutes a danger to the cell and is counteracted by cytoplasmic DNases and APOBEC3 cytidine deamination of DNA. To investigate APOBEC3 editing of leaked mtDNA to the cytoplasm, we performed a PCR analysis of APOBEC3 edited cytoplasmic mtDNA (cymtDNA) at the single cell level for primary CD4+ T cells and the established P2 EBV blast cell line. Up to 17% of primary CD4+ T cells showed signs of APOBEC3 edited cymtDNA with ~50% of all mtDNA sequences showing signs of APOBEC3 editing - between 1500-5000 molecules. Although the P2 cell line showed a much lower frequency of stressed cells, the number of edited mtDNA molecules in such cells was of the same order. Addition of the genotoxic molecules, etoposide or actinomycin D increased the number of cells showing APOBEC3 edited cymtDNA to around 40%. These findings reveal a very dynamic image of the mitochondrial network, which changes considerably under stress. APOBEC3 deaminases are involved in the catabolism of mitochondrial DNA to circumvent chronic immune stimulation triggered by released mitochondrial DNA from damaged cells.
Insights
Cellular stress releases mitochondrial DNA (mtDNA) into the cytoplasm. APOBEC3 enzymes edit this leaked mtDNA, preventing immune overstimulation from damaged cells.
Area of Science:
- Cellular Biology
- Immunology
- Genetics
Background:
- Cellular stress can cause mitochondrial DNA (mtDNA) to leak into the cytoplasm.
- Leaked mtDNA acts as a danger signal, triggering cellular responses.
- Cytoplasmic DNases and APOBEC3 enzymes normally counteract this leaked DNA.
Purpose of the Study:
- To investigate the role of APOBEC3 enzymes in editing cytoplasmic mtDNA (cymtDNA).
- To analyze APOBEC3 editing of cymtDNA in primary CD4+ T cells and a cell line under stress.
Main Methods:
- Performed single-cell PCR analysis.
- Quantified APOBEC3-edited cymtDNA.
- Utilized primary CD4+ T cells and the P2 EBV blast cell line.
- Induced stress using genotoxic agents like etoposide and actinomycin D.
Main Results:
- Up to 17% of primary CD4+ T cells showed APOBEC3-edited cymtDNA.
- Approximately 50% of all analyzed mtDNA sequences exhibited APOBEC3 editing.
- Genotoxic stress increased the incidence of APOBEC3-edited cymtDNA to about 40% of cells.
- Similar levels of edited mtDNA molecules were observed in stressed P2 cell lines.
Conclusions:
- Mitochondrial networks are dynamic and change significantly under stress.
- APOBEC3 deaminases play a role in catabolizing mtDNA.
- This process helps circumvent chronic immune stimulation caused by released mtDNA from damaged cells.
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