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Developmental defects and p53 hyperacetylation in Sir2 homolog (SIRT1)-deficient mice
Hwei-Ling Cheng1, Raul Mostoslavsky, Shin'ichi Saito
1Howard Hughes Medical Institute, Children's Hospital, Center for Blood Research, and Department of Genetics, Harvard University Medical School, Boston, MA 02115, USA.
Abstract:
SIRT1 is a mammalian homolog of the Saccharomyces cerevisiae chromatin silencing factor Sir2. Dominant-negative and overexpression studies have implicated a role for SIRT1 in deacetylating the p53 tumor suppressor protein to dampen apoptotic and cellular senescence pathways. To elucidate SIRT1 function in normal cells, we used gene-targeted mutation to generate mice that express either a mutant SIRT1 protein that lacks part of the catalytic domain or has no detectable SIRT1 protein at all. Both types of SIRT1 mutant mice and cells had essentially the same phenotypes. SIRT1 mutant mice were small, and exhibited notable developmental defects of the retina and heart, and only infrequently survived postnatally. Moreover, SIRT1-deficient cells exhibited p53 hyperacetylation after DNA damage and increased ionizing radiation-induced thymocyte apoptosis. In SIRT1-deficient embryonic fibroblasts, however, p53 hyperacetylation after DNA damage was not accompanied by increased p21 protein induction or DNA damage sensitivity. Together, our observations provide direct evidence that endogenous SIRT1 protein regulates p53 acetylation and p53-dependent apoptosis, and show that the function of this enzyme is required for specific developmental processes.
Insights
SIRT1 protein is crucial for normal development and cellular processes. Gene mutation studies reveal its role in regulating p53 acetylation, impacting apoptosis and developmental defects.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- SIRT1, a homolog of yeast Sir2, is implicated in deacetylating the p53 tumor suppressor.
- Previous studies suggested SIRT1 dampens apoptosis and cellular senescence pathways.
Purpose of the Study:
- To investigate the function of endogenous SIRT1 in normal cells.
- To elucidate the role of SIRT1 in p53 regulation and development.
Main Methods:
- Generation of gene-targeted mutant mice lacking functional SIRT1 protein.
- Analysis of phenotypes in SIRT1 mutant mice and cells.
- Assessment of p53 acetylation and apoptosis in response to DNA damage.
Main Results:
- SIRT1 mutant mice displayed developmental defects (retina, heart) and reduced survival.
- SIRT1-deficient cells showed p53 hyperacetylation and increased thymocyte apoptosis after DNA damage.
- p53 hyperacetylation in SIRT1-deficient cells did not increase p21 induction or DNA damage sensitivity.
Conclusions:
- Endogenous SIRT1 regulates p53 acetylation and p53-dependent apoptosis.
- SIRT1 function is essential for specific developmental processes.
- SIRT1 plays a critical role in cellular responses to DNA damage.