Embryonic lethality and liver degeneration in mice lacking the metal-responsive transcriptional activator MTF-1
Embryonic lethality and liver degeneration in mice lacking the metal-responsive transcriptional activator MTF-1
We have shown previously that the heavy metal-responsive transcriptional activator MTF-1 regulates the basal and heavy metal-induced expression of metallothioneins. To investigate the physiological function of MTF-1, we generated null mutant mice by targeted gene disruption. Embryos lacking MTF-1 die in utero at approximately day 14 of gestation. They show impaired development of hepatocytes and, at later stages, liver decay and generalized edema. MTF-1(-/-) embryos fail to transcribe metallothionein I and II genes, and also show diminished transcripts of the gene which encodes the heavy-chain subunit of the gamma-glutamylcysteine synthetase, a key enzyme for glutathione biosynthesis. Metallothionein and glutathione are involved in heavy metal homeostasis and detoxification processes, such as scavenging reactive oxygen intermediates. Accordingly, primary mouse embryo fibroblasts lacking MTF-1 show increased susceptibility to the cytotoxic effects of cadmium or hydrogen peroxide. Thus, MTF-1 may help to control metal homeostasis and probably cellular redox state, especially during liver development. We also note that the MTF-1 null mutant phenotype bears some similarity to those of two other regulators of cellular stress response, namely c-Jun and NF-kappaB (p65/RelA).
- University of Zurich Switzerland
- University Hospital of Zurich Switzerland
- Roche (Switzerland) Switzerland
Male, 10208 Institute of Neuropathology, 610 Medicine & health, Genetics and Molecular Biology, Glutathione Synthase, Embryonic and Fetal Development, Mice, 1300 General Biochemistry, Genetics and Molecular Biology, 2400 General Immunology and Microbiology, 1312 Molecular Biology, Animals, Edema, Molecular Biology, Cells, Cultured, Mice, Knockout, General Immunology and Microbiology, General Neuroscience, Liver Diseases, 2800 General Neuroscience, Dipeptides, Hydrogen Peroxide, Fibroblasts, DNA-Binding Proteins, Mice, Inbred C57BL, Fetal Diseases, Gene Expression Regulation, Liver, General Biochemistry, Gene Targeting, 570 Life sciences; biology, Female, Cadmium
Male, 10208 Institute of Neuropathology, 610 Medicine & health, Genetics and Molecular Biology, Glutathione Synthase, Embryonic and Fetal Development, Mice, 1300 General Biochemistry, Genetics and Molecular Biology, 2400 General Immunology and Microbiology, 1312 Molecular Biology, Animals, Edema, Molecular Biology, Cells, Cultured, Mice, Knockout, General Immunology and Microbiology, General Neuroscience, Liver Diseases, 2800 General Neuroscience, Dipeptides, Hydrogen Peroxide, Fibroblasts, DNA-Binding Proteins, Mice, Inbred C57BL, Fetal Diseases, Gene Expression Regulation, Liver, General Biochemistry, Gene Targeting, 570 Life sciences; biology, Female, Cadmium
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