Mitochondrial DNA (mtDNA) replication uses a simple core machinery similar to those of bacterial viruses and plasmids, but its components are challenging to unravel. Here, we found that, as in mammals, the single Drosophila gene for RNase H1 (rnh1) has alternative translational start sites, resulting in two polypeptides, targeted to either mitochondria or the nucleus. RNAi-mediated rnh1 knockdown did not influence growth or viability of S2 cells, but compromised mtDNA integrity and copy number. rnh1 knockdown in intact flies also produced a phenotype of impaired mitochondrial function, characterized by respiratory chain deficiency, locomotor dysfunction, and decreased lifespan. Its overexpression in S2 cells resulted in cell lethality after...
Replication stalling has been associated with the formation of pathological mitochondrial DNA (mtDNA...
During replication of nuclear ribosomal DNA (rDNA), clashes with the transcription apparatus can cau...
SummaryThe presence of ribonucleotides in genomic DNA is undesirable given their increased susceptib...
Mitochondrial DNA (mtDNA) replication uses a simple core machinery similar to those of bacterial vir...
The in vivo role for RNase H1 in mammalian mitochondria has been much debated. Loss of RNase H1 is e...
RNase H1 is able to recognize DNA/RNA heteroduplexes and to degrade their RNA component. As a conseq...
Human mitochondrial DNA (mtDNA) replication is first initiated at the origin of H-strand replication...
Human mitochondrial DNA (mtDNA) replication is first initiated at the origin of H-strand replication...
Pathological conditions impairing functions of mitochondria often lead to compensatory upregulation ...
RNase H1 is able to recognize DNA/RNA heteroduplexes and to degrade their RNA component. As a conseq...
AbstractRecent evidence suggests that coupled leading and lagging strand DNA synthesis operates in m...
Mitochondrial DNA synthesis is necessary for the normal function of the organelle and for the eukary...
In eukaryotes, ribonuclease H1 (RNase H1) is involved in the processing and removal of RNA/DNA hybri...
The machinery of mitochondrial DNA (mtDNA) maintenance is only partially characterized and is of wid...
Replication stalling has been associated with the formation of pathological mitochondrial DNA (mtDNA...
During replication of nuclear ribosomal DNA (rDNA), clashes with the transcription apparatus can cau...
SummaryThe presence of ribonucleotides in genomic DNA is undesirable given their increased susceptib...
Mitochondrial DNA (mtDNA) replication uses a simple core machinery similar to those of bacterial vir...
The in vivo role for RNase H1 in mammalian mitochondria has been much debated. Loss of RNase H1 is e...
RNase H1 is able to recognize DNA/RNA heteroduplexes and to degrade their RNA component. As a conseq...
Human mitochondrial DNA (mtDNA) replication is first initiated at the origin of H-strand replication...
Human mitochondrial DNA (mtDNA) replication is first initiated at the origin of H-strand replication...
Pathological conditions impairing functions of mitochondria often lead to compensatory upregulation ...
RNase H1 is able to recognize DNA/RNA heteroduplexes and to degrade their RNA component. As a conseq...
AbstractRecent evidence suggests that coupled leading and lagging strand DNA synthesis operates in m...
Mitochondrial DNA synthesis is necessary for the normal function of the organelle and for the eukary...
In eukaryotes, ribonuclease H1 (RNase H1) is involved in the processing and removal of RNA/DNA hybri...
The machinery of mitochondrial DNA (mtDNA) maintenance is only partially characterized and is of wid...
Replication stalling has been associated with the formation of pathological mitochondrial DNA (mtDNA...
During replication of nuclear ribosomal DNA (rDNA), clashes with the transcription apparatus can cau...
SummaryThe presence of ribonucleotides in genomic DNA is undesirable given their increased susceptib...