نتایج جستجو برای: mitochondrial transcription factor a

تعداد نتایج: 13668788  

2011
Wenxia Sun Zhe Wang Hengyi Jiang Jing Zhang Jürg Bähler Dongrong Chen Alastair I. H. Murchie

In eukaryotic cells, Mtf1 and its homologues function as mitochondrial transcription factors for the mitochondrial RNA polymerase in the mitochondrion. Here we show that in fission yeast Mtf1 exerts a non-mitochondrial function as a nuclear factor that regulates transcription of srk1, which is a kinase involved in the stress response and cell cycle progression. We first found Mtf1 expression in...

2016
Inge Kühl Maria Miranda Viktor Posse Dusanka Milenkovic Arnaud Mourier Stefan J Siira Nina A Bonekamp Ulla Neumann Aleksandra Filipovska Paola Loguercio Polosa Claes M Gustafsson Nils-Göran Larsson

Mitochondria are vital in providing cellular energy via their oxidative phosphorylation system, which requires the coordinated expression of genes encoded by both the nuclear and mitochondrial genomes (mtDNA). Transcription of the circular mammalian mtDNA depends on a single mitochondrial RNA polymerase (POLRMT). Although the transcription initiation process is well understood, it is debated wh...

Journal: :Human molecular genetics 1997
N G Larsson A Oldfors J D Garman G S Barsh D A Clayton

Mitochondrial transcription factor A (mtTFA) is a key activator of mitochondrial transcription in mammals. It also has a role in mitochondrial DNA (mtDNA) replication, since transcription generates an RNA primer necessary for initiation of mtDNA replication. In the mouse, testis-specific mtTFA transcripts encode a protein isoform that is imported to the nucleus rather than into mitochondria of ...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2012
Ornella Zollo Valeria Tiranti Neal Sondheimer

The heavy strand of mtDNA contains two promoters with nonoverlapping functions. The role of the minor heavy-strand promoter (HSP2) is controversial, because the promoter has been difficult to activate in an in vitro system. We have isolated HSP2 by excluding its interaction with the more powerful HSP1 promoter, and we find that it is transcribed efficiently by recombinant mtRNA polymerase and m...

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