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1.
Cell Metab ; 17(4): 618-26, 2013 Apr 02.
Article in English | MEDLINE | ID: mdl-23562081

ABSTRACT

Mitochondrial transcription termination factor 1, MTERF1, has been reported to couple rRNA gene transcription initiation with termination and is therefore thought to be a key regulator of mammalian mitochondrial ribosome biogenesis. The prevailing model is based on a series of observations published over the last two decades, but no in vivo evidence exists to show that MTERF1 regulates transcription of the heavy-strand region of mtDNA containing the rRNA genes. Here, we demonstrate that knockout of Mterf1 in mice has no effect on mitochondrial rRNA levels or mitochondrial translation. Instead, loss of Mterf1 influences transcription initiation at the light-strand promoter, resulting in a decrease of de novo transcription manifested as reduced 7S RNA levels. Based on these observations, we suggest that MTERF1 does not regulate heavy-strand transcription, but rather acts to block transcription on the opposite strand of mtDNA to prevent transcription interference at the light-strand promoter.


Subject(s)
DNA, Mitochondrial/metabolism , Mitochondria/genetics , Mitochondrial Proteins/metabolism , RNA, Ribosomal/metabolism , Transcription Factors/metabolism , Animals , Cell Line , DNA, Mitochondrial/genetics , Gene Expression Regulation , Mice , Mice, Knockout , Mitochondria/metabolism , Mitochondrial Proteins/deficiency , Mitochondrial Proteins/genetics , Oxidative Phosphorylation , Promoter Regions, Genetic , Protein Binding , RNA, Transfer/metabolism , Transcription Factors/deficiency , Transcription Factors/genetics , Transcription Initiation, Genetic
2.
J Biol Chem ; 288(22): 15510-9, 2013 May 31.
Article in English | MEDLINE | ID: mdl-23599432

ABSTRACT

Regulation of mtDNA expression is critical for controlling oxidative phosphorylation capacity and has been reported to occur at several different levels in mammalian mitochondria. LRPPRC (leucine-rich pentatricopeptide repeat-containing protein) has a key role in this regulation and acts at the post-transcriptional level to stabilize mitochondrial mRNAs, to promote mitochondrial mRNA polyadenylation, and to coordinate mitochondrial translation. However, recent studies have suggested that LRPPRC may have an additional intramitochondrial role by directly interacting with the mitochondrial RNA polymerase POLRMT to stimulate mtDNA transcription. In this study, we have further examined the intramitochondrial roles for LRPPRC by creating bacterial artificial chromosome transgenic mice with moderately increased LRPPRC expression and heterozygous Lrpprc knock-out mice with moderately decreased LRPPRC expression. Variation of LRPPRC levels in mice in vivo, occurring within a predicted normal physiological range, strongly affected the levels of an unprocessed mitochondrial precursor transcript (ND5-cytochrome b) but had no effect on steady-state levels of mitochondrial transcripts or de novo transcription of mtDNA. We further assessed the role of LRPPRC in mitochondrial transcription by performing size exclusion chromatography and immunoprecipitation experiments in human cell lines and mice, but we found no interaction between LRPPRC and POLRMT. Furthermore, addition of purified LRPPRC to a recombinant human in vitro transcription system did not activate mtDNA transcription. On the basis of these data, we conclude that LRPPRC does not directly regulate mtDNA transcription but rather acts as a post-transcriptional regulator of mammalian mtDNA expression.


Subject(s)
DNA-Directed RNA Polymerases/metabolism , Gene Expression Regulation/physiology , Mitochondria, Heart/metabolism , Mitochondria, Liver/metabolism , Neoplasm Proteins/metabolism , Animals , Cytochromes b/genetics , Cytochromes b/metabolism , DNA, Mitochondrial/genetics , DNA, Mitochondrial/metabolism , DNA-Directed RNA Polymerases/genetics , Electron Transport Complex I/genetics , Electron Transport Complex I/metabolism , HeLa Cells , Humans , Mice , Mice, Knockout , Mitochondria, Heart/genetics , Mitochondria, Liver/genetics , Mitochondrial Proteins/genetics , Mitochondrial Proteins/metabolism , NADH Dehydrogenase/genetics , NADH Dehydrogenase/metabolism , Neoplasm Proteins/genetics , Transcription, Genetic/physiology
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