Mitochondrial transcription factors TFAM and TFB2M regulate Serca2 gene transcription. 2011

Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
Department of Medicine and Biological Science, Gunma University Graduate School of Medicine, Maebashi, Gunma 371-8511, Japan.

OBJECTIVE Sarco(endo)plasmic reticulum Ca²(+)-ATPase 2a (SERCA2a) transports Ca²(+) by consuming ATP produced by mitochondrial respiratory chain enzymes. Messenger RNA (mRNA) for these enzymes is transcribed by mitochondrial transcription factors A (TFAM) and B2 (TFB2M). This study examined whether TFAM and TFB2M coordinately regulate the transcription of the Serca2 gene and mitochondrial genes. RESULTS Nuclear localization of TFAM and TFB2M was demonstrated by immunostaining in rat neonatal cardiac myocytes. Chromatin immunoprecipitation assay and fluorescence correlation spectroscopy revealed that TFAM and TFB2M bind to the -122 to -114 nt and -122 to -117 nt regions of the rat Serca2 gene promoter, respectively. Mutation of these sites resulted in decreased Serca2 gene transcription. In a rat myocardial infarction model, Serca2a mRNA levels significantly correlated with those of Tfam (r = 0.54, P < 0.001) and Tfb2m (r = 0.73, P < 0.001). Overexpression of TFAM and TFB2M blocked hydrogen peroxide- and norepinephrine-induced decreases in Serca2a mRNA levels. In addition, overexpression of TFAM and TFB2M increased the mitochondrial DNA (mtDNA) copy number and mRNA levels of mitochondrial enzymes. CONCLUSIONS Although TFAM and TFB2M are recognized as mtDNA-specific transcription factors, they also regulate transcription of nuclear DNA, i.e. the Serca2 gene. Our findings suggest a novel paradigm in which the transcription of genes for mitochondrial enzymes that produce ATP and the gene for SERCA2a that consumes ATP is coordinately regulated by the same transcription factors. This mechanism may contribute to maintaining proper cardiac function.

UI MeSH Term Description Entries
D008929 Mitochondria, Heart The mitochondria of the myocardium. Heart Mitochondria,Myocardial Mitochondria,Mitochondrion, Heart,Heart Mitochondrion,Mitochondria, Myocardial
D009154 Mutation Any detectable and heritable change in the genetic material that causes a change in the GENOTYPE and which is transmitted to daughter cells and to succeeding generations. Mutations
D009203 Myocardial Infarction NECROSIS of the MYOCARDIUM caused by an obstruction of the blood supply to the heart (CORONARY CIRCULATION). Cardiovascular Stroke,Heart Attack,Myocardial Infarct,Cardiovascular Strokes,Heart Attacks,Infarct, Myocardial,Infarction, Myocardial,Infarctions, Myocardial,Infarcts, Myocardial,Myocardial Infarctions,Myocardial Infarcts,Stroke, Cardiovascular,Strokes, Cardiovascular
D011401 Promoter Regions, Genetic DNA sequences which are recognized (directly or indirectly) and bound by a DNA-dependent RNA polymerase during the initiation of transcription. Highly conserved sequences within the promoter include the Pribnow box in bacteria and the TATA BOX in eukaryotes. rRNA Promoter,Early Promoters, Genetic,Late Promoters, Genetic,Middle Promoters, Genetic,Promoter Regions,Promoter, Genetic,Promotor Regions,Promotor, Genetic,Pseudopromoter, Genetic,Early Promoter, Genetic,Genetic Late Promoter,Genetic Middle Promoters,Genetic Promoter,Genetic Promoter Region,Genetic Promoter Regions,Genetic Promoters,Genetic Promotor,Genetic Promotors,Genetic Pseudopromoter,Genetic Pseudopromoters,Late Promoter, Genetic,Middle Promoter, Genetic,Promoter Region,Promoter Region, Genetic,Promoter, Genetic Early,Promoter, rRNA,Promoters, Genetic,Promoters, Genetic Middle,Promoters, rRNA,Promotor Region,Promotors, Genetic,Pseudopromoters, Genetic,Region, Genetic Promoter,Region, Promoter,Region, Promotor,Regions, Genetic Promoter,Regions, Promoter,Regions, Promotor,rRNA Promoters
D002467 Cell Nucleus Within a eukaryotic cell, a membrane-limited body which contains chromosomes and one or more nucleoli (CELL NUCLEOLUS). The nuclear membrane consists of a double unit-type membrane which is perforated by a number of pores; the outermost membrane is continuous with the ENDOPLASMIC RETICULUM. A cell may contain more than one nucleus. (From Singleton & Sainsbury, Dictionary of Microbiology and Molecular Biology, 2d ed) Cell Nuclei,Nuclei, Cell,Nucleus, Cell
D002478 Cells, Cultured Cells propagated in vitro in special media conducive to their growth. Cultured cells are used to study developmental, morphologic, metabolic, physiologic, and genetic processes, among others. Cultured Cells,Cell, Cultured,Cultured Cell
D004195 Disease Models, Animal Naturally-occurring or experimentally-induced animal diseases with pathological processes analogous to human diseases. Animal Disease Model,Animal Disease Models,Disease Model, Animal
D004272 DNA, Mitochondrial Double-stranded DNA of MITOCHONDRIA. In eukaryotes, the mitochondrial GENOME is circular and codes for ribosomal RNAs, transfer RNAs, and about 10 proteins. Mitochondrial DNA,mtDNA
D004734 Energy Metabolism The chemical reactions involved in the production and utilization of various forms of energy in cells. Bioenergetics,Energy Expenditure,Bioenergetic,Energy Expenditures,Energy Metabolisms,Expenditure, Energy,Expenditures, Energy,Metabolism, Energy,Metabolisms, Energy
D000255 Adenosine Triphosphate An adenine nucleotide containing three phosphate groups esterified to the sugar moiety. In addition to its crucial roles in metabolism adenosine triphosphate is a neurotransmitter. ATP,Adenosine Triphosphate, Calcium Salt,Adenosine Triphosphate, Chromium Salt,Adenosine Triphosphate, Magnesium Salt,Adenosine Triphosphate, Manganese Salt,Adenylpyrophosphate,CaATP,CrATP,Manganese Adenosine Triphosphate,MgATP,MnATP,ATP-MgCl2,Adenosine Triphosphate, Chromium Ammonium Salt,Adenosine Triphosphate, Magnesium Chloride,Atriphos,Chromium Adenosine Triphosphate,Cr(H2O)4 ATP,Magnesium Adenosine Triphosphate,Striadyne,ATP MgCl2

Related Publications

Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
January 2017, Nucleic acids research,
Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
June 2010, The Journal of biological chemistry,
Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
December 2023, Bio-protocol,
Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
February 2008, Neuroscience letters,
Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
January 2011, Mitochondrion,
Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
July 2009, Parkinsonism & related disorders,
Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
July 2014, Biochemical and biophysical research communications,
Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
September 2018, Scientific reports,
Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
February 1997, Mammalian genome : official journal of the International Mammalian Genome Society,
Atai Watanabe, and Masashi Arai, and Norimichi Koitabashi, and Kazuo Niwano, and Yoshiaki Ohyama, and Yoshihumi Yamada, and Noriko Kato, and Masahiko Kurabayashi
April 2008, Journal of Alzheimer's disease : JAD,
Copied contents to your clipboard!