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Updated: Jan 26, 2026

Visualization of Mitochondrial DNA Replication in Individual Cells by EdU Signal Amplification
Published on: November 15, 2010
A unique exonuclease ExoG cleaves between RNA and DNA in mitochondrial DNA replication
Chyuan-Chuan Wu1, Jason L J Lin1, Hsin-Fang Yang-Yen1
1Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan 11529, ROC.
Abstract:
Replication of sufficient mitochondrial DNA (mtDNA) is essential for maintaining mitochondrial functions in mammalian cells. During mtDNA replication, RNA primers must be removed before the nascent circular DNA strands rejoin. This process involves mitochondrial RNase H1, which removes most of the RNA primers but leaves two ribonucleotides attached to the 5' end of nascent DNA. A subsequent 5'-exonuclease is required to remove the residual ribonucleotides, however, it remains unknown if any mitochondrial 5'-exonuclease could remove two RNA nucleotides from a hybrid duplex DNA. Here, we report that human mitochondrial Exonuclease G (ExoG) may participate in this particular process by efficiently cleaving at RNA-DNA junctions to remove the 5'-end RNA dinucleotide in an RNA/DNA hybrid duplex. Crystal structures of human ExoG bound respectively with DNA, RNA/DNA hybrid and RNA-DNA chimeric duplexes uncover the underlying structural mechanism of how ExoG specifically recognizes and cleaves at RNA-DNA junctions of a hybrid duplex with an A-form conformation. This study hence establishes the molecular basis of ExoG functioning as a unique 5'-exonuclease to mediate the flap-independent RNA primer removal process during mtDNA replication to maintain mitochondrial genome integrity.
Insights
Human mitochondrial Exonuclease G (ExoG) uniquely removes residual RNA primers during mitochondrial DNA replication. This 5'-exonuclease ensures mitochondrial genome integrity by cleaving RNA-DNA junctions.
Area of Science:
- Mitochondrial biology
- Molecular genetics
- Enzymology
Background:
- Mitochondrial DNA (mtDNA) replication requires efficient RNA primer removal.
- Mitochondrial RNase H1 partially removes RNA primers, leaving a dinucleotide remnant.
- A specific 5"-exonuclease is needed to clear these residual RNA nucleotides.
Purpose of the Study:
- To identify a mitochondrial 5"-exonuclease capable of removing RNA dinucleotides from hybrid DNA.
- To elucidate the structural mechanism of this exonuclease's activity at RNA-DNA junctions.
Main Methods:
- Biochemical assays to test exonuclease activity on RNA/DNA substrates.
- X-ray crystallography to determine the structure of human Exonuclease G (ExoG) with various nucleic acid duplexes.
Main Results:
- Human mitochondrial Exonuclease G (ExoG) efficiently cleaves RNA dinucleotides at RNA-DNA junctions.
- Crystal structures reveal ExoG's specific recognition and cleavage mechanism for A-form RNA/DNA hybrids.
- ExoG functions as a unique 5"-exonuclease in mtDNA replication primer processing.
Conclusions:
- ExoG is crucial for flap-independent RNA primer removal during mtDNA replication.
- This study establishes the molecular basis for ExoG's role in maintaining mitochondrial genome integrity.
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