Literature DB >> 14744862

A monomer-to-trimer transition of the human mitochondrial transcription termination factor (mTERF) is associated with a loss of in vitro activity.

Jordi Asin-Cayuela1, Mark Helm, Giuseppe Attardi.   

Abstract

The human mitochondrial transcription termination factor (mTERF) is a nuclear-encoded 39-kDa protein that recognizes a mtDNA segment within the mitochondrial tRNA(Leu(UUR)) gene immediately adjacent to and downstream of the 16 S rRNA gene. Binding of mTERF to this site promotes termination of rDNA transcription. Despite the fact that mTERF binds DNA as a monomer, the presence in its sequence of three leucine-zipper motifs suggested the possibility of mTERF establishing intermolecular interactions with proteins of the same or different type. When a mitochondrial lysate from HeLa cells was submitted to gel filtration chromatography, mTERF was eluted in two peaks, as detected by immunoblotting. The first peak, which varied in proportion between 30 and 50%, appeared at the position expected from the molecular mass of the monomer (41 +/- 2 kDa), and the gel filtration fractions that contained it exhibited DNA binding activity. Most interestingly, the material in this peak had a strong stimulating activity on in vitro transcription of the mitochondrial rDNA. The second peak eluted at a position corresponding to an estimated molecular mass of 111 +/- 5 kDa. No mTERF DNA binding activity could be detected in the corresponding gel filtration fractions. Therefore, we propose that mTERF exists in mitochondria in two forms, an active monomer and an inactive large size complex. The estimated molecular weight of this complex and the fact that purified mTERF can be eluted from a gel filtration column as a complex of the same molecular weight strongly suggest that this inactive complex is a homotrimer of mTERF.

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Year:  2004        PMID: 14744862     DOI: 10.1074/jbc.M312537200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  6 in total

Review 1.  A compendium of human mitochondrial gene expression machinery with links to disease.

Authors:  Timothy E Shutt; Gerald S Shadel
Journal:  Environ Mol Mutagen       Date:  2010-06       Impact factor: 3.216

2.  Phosphorylation of rat mitochondrial transcription termination factor (mTERF) is required for transcription termination but not for binding to DNA.

Authors:  Ascensión Prieto-Martín; Julio Montoya; Francisco Martínez-Azorín
Journal:  Nucleic Acids Res       Date:  2004-04-15       Impact factor: 16.971

3.  Effects on mitochondrial transcription of manipulating mTERF protein levels in cultured human HEK293 cells.

Authors:  Anne K Hyvärinen; Mona K Kumanto; Sanna K Marjavaara; Howard T Jacobs
Journal:  BMC Mol Biol       Date:  2010-09-16       Impact factor: 2.946

4.  mTERF2 regulates oxidative phosphorylation by modulating mtDNA transcription.

Authors:  Tina Wenz; Corneliu Luca; Alessandra Torraco; Carlos T Moraes
Journal:  Cell Metab       Date:  2009-06       Impact factor: 27.287

Review 5.  Mitochondrial transcription in mammalian cells.

Authors:  Inna N Shokolenko; Mikhail F Alexeyev
Journal:  Front Biosci (Landmark Ed)       Date:  2017-01-01

6.  The mitochondrial transcription termination factor mTERF modulates replication pausing in human mitochondrial DNA.

Authors:  Anne K Hyvärinen; Jaakko L O Pohjoismäki; Aurelio Reyes; Sjoerd Wanrooij; Takehiro Yasukawa; Pekka J Karhunen; Johannes N Spelbrink; Ian J Holt; Howard T Jacobs
Journal:  Nucleic Acids Res       Date:  2007-09-20       Impact factor: 16.971

  6 in total

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