<div><p>Single subunit RNA polymerases have evolved 2 mechanisms to synthesize long transcripts without falling off a DNA template: binding of nascent RNA and interactions with an RNA:DNA hybrid. Mitochondrial RNA polymerases share a common ancestor with T-odd bacteriophage single subunit RNA polymerases. Herein we characterized the role of the thumb subdomain of the yeast mtRNA polymerase gene (RPO41) in complex stability, processivity, and fidelity. We found that deletion and point mutants of the thumb subdomain of yeast mtRNA polymerase increase the synthesis of abortive transcripts and the probability that the polymerase will disengage from the template during the formation of the late initial transcription and elongation complexes. Mut...
Transcription of the mitochondrial genome is performed by a single-subunit RNA polymerase (mtRNAP) t...
Mitochondria are vital in providing cellular energy via their oxidative phosphorylation system, whic...
Mitochondria are vital in providing cellular energy via their oxidative phosphorylation system, whic...
<div><p>Despite their clear T7-bacteriophage origin, mitochondrial RNA polymerases have evolved to r...
Despite their clear T7-bacteriophage origin, mitochondrial RNA polymerases have evolved to require t...
Transcription of the yeast mitochondrial genome is carried out by an RNA polymerase (Rpo41p) that is...
Functional conservation of mitochondrial RNA polymerases was investigated in vivo by heterologous co...
The single-subunit RNA polymerases make up a widespread family of proteins found in phage, mitochond...
The core mitochondrial RNA polymerase is a single-subunit enzyme that in yeast Saccharomyces cerevis...
The core enzyme of mitochondrial RNA polymerase in yeast is homologous to those of bacteriophages T3...
Mammalian mitochondrial transcription is executed by a single subunit mitochondrial RNA polymerase (...
Here we report the crystal structure of the human mitochondrial RNA polymerase (mtRNAP) transcriptio...
Mitochondria are autonomous double-membrane-bound organelles in eukaryotic cells. Their most importa...
Promoter recognition and local melting of DNA are key steps of transcription initiation catalyzed by...
Being the first step in gene expression, transcription is a tightly regulated process in the cell cy...
Transcription of the mitochondrial genome is performed by a single-subunit RNA polymerase (mtRNAP) t...
Mitochondria are vital in providing cellular energy via their oxidative phosphorylation system, whic...
Mitochondria are vital in providing cellular energy via their oxidative phosphorylation system, whic...
<div><p>Despite their clear T7-bacteriophage origin, mitochondrial RNA polymerases have evolved to r...
Despite their clear T7-bacteriophage origin, mitochondrial RNA polymerases have evolved to require t...
Transcription of the yeast mitochondrial genome is carried out by an RNA polymerase (Rpo41p) that is...
Functional conservation of mitochondrial RNA polymerases was investigated in vivo by heterologous co...
The single-subunit RNA polymerases make up a widespread family of proteins found in phage, mitochond...
The core mitochondrial RNA polymerase is a single-subunit enzyme that in yeast Saccharomyces cerevis...
The core enzyme of mitochondrial RNA polymerase in yeast is homologous to those of bacteriophages T3...
Mammalian mitochondrial transcription is executed by a single subunit mitochondrial RNA polymerase (...
Here we report the crystal structure of the human mitochondrial RNA polymerase (mtRNAP) transcriptio...
Mitochondria are autonomous double-membrane-bound organelles in eukaryotic cells. Their most importa...
Promoter recognition and local melting of DNA are key steps of transcription initiation catalyzed by...
Being the first step in gene expression, transcription is a tightly regulated process in the cell cy...
Transcription of the mitochondrial genome is performed by a single-subunit RNA polymerase (mtRNAP) t...
Mitochondria are vital in providing cellular energy via their oxidative phosphorylation system, whic...
Mitochondria are vital in providing cellular energy via their oxidative phosphorylation system, whic...