DNA hypomethylation perturbs the function and survival of CNS neurons in postnatal animals.

Details

Serval ID
serval:BIB_20777
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
DNA hypomethylation perturbs the function and survival of CNS neurons in postnatal animals.
Journal
Journal of Neuroscience
Author(s)
Fan G., Beard C., Chen R.Z., Csankovszki G., Sun Y., Siniaia M., Biniszkiewicz D., Bates B., Lee P.P., Kuhn R., Trumpp A., Poon C., Wilson C.B., Jaenisch R.
ISSN
1529-2401[electronic]
Publication state
Published
Issued date
2001
Volume
21
Number
3
Pages
788-797
Language
english
Abstract
DNA methyltransferase I (Dnmt1), the maintenance enzyme for DNA cytosine methylation, is expressed at high levels in the CNS during embryogenesis and after birth. Because embryos deficient for Dnmt1 die at gastrulation, the role of Dnmt1 in the development and function of the nervous system could not be studied by using this mutation. We therefore used the cre/loxP system to produce conditional mutants that lack Dnmt1 in neuroblasts of embryonic day 12 embryos or in postmitotic neurons of the postnatal animal. Conditional deletion of the Dnmt1 gene resulted in rapid depletion of Dnmt1 proteins, indicating that the enzyme in postmitotic neurons turns over quickly. Dnmt1 deficiency in postmitotic neurons neither affected levels of global DNA methylation nor influenced cell survival during postnatal life. In contrast, Dnmt1 deficiency in mitotic CNS precursor cells resulted in DNA hypomethylation in daughter cells. Whereas mutant embryos carrying 95% hypomethylated cells in the brain died immediately after birth because of respiratory distress, mosaic animals with 30% hypomethylated CNS cells were viable into adulthood. However, these mutant cells were eliminated quickly from the brain within 3 weeks of postnatal life. Thus, hypomethylated CNS neurons were impaired functionally and were selected against at postnatal stages.
Keywords
Animals, Animals, Newborn, Cell Count, Cell Death, Cell Survival/physiology, Cells, Cultured, Central Nervous System/growth &amp, development, Central Nervous System/metabolism, Crosses, Genetic, DNA (Cytosine-5-)-Methyltransferase/deficiency, DNA (Cytosine-5-)-Methyltransferase/genetics, DNA Methylation, Electrophysiology, Gene Targeting, Mice, Mice, Transgenic, Mosaicism/genetics, Neurodegenerative Diseases/genetics, Neurodegenerative Diseases/metabolism, Neurons/cytology, Neurons/metabolism, Respiratory Insufficiency/genetics, Stem Cells/cytology, Stem Cells/metabolism
Pubmed
Web of science
Create date
19/11/2007 13:15
Last modification date
20/08/2019 13:56
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