DNA damage response and cellular senescence in tissues of aging mice
Реакция на повреждение ДНК и клеточное старение в тканях стареющих мышей
2009-04-09
SCID: 54.1/c5zs9bez
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DNA damage responseage-dependent DNA damage focicellular senescencegamma-H2A.X immunohistochemistrytelomere-independent senescence
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Abstract (AI)
The impact of cellular senescence onto aging of organisms is not fully clear, not at least because of the scarcity of reliable data on the mere frequency of senescent cells in aging tissues. Activation of a DNA damage response including formation of DNA damage foci containing activated H2A.X (gamma-H2A.X) at either uncapped telomeres or persistent DNA strand breaks is the major trigger of cell senescence. Therefore, gamma-H2A.X immunohistochemistry (IHC) was established by us as a reliable quantitative indicator of senescence in fibroblasts in vitro and in hepatocytes in vivo and the age dependency of DNA damage foci accumulation in ten organs of C57Bl6 mice was analysed over an age range from 12 to 42 months. There were significant increases with age in the frequency of foci-containing cells in lung, spleen, dermis, liver and gut epithelium. In liver, foci-positive cells were preferentially found in the centrilobular area, which is exposed to higher levels of oxidative stress. Foci formation in the intestine was restricted to the crypts. It was not associated with either apoptosis or hyperproliferation. That telomeres shortened with age in both crypt and villus enterocytes, but telomeres in the crypt epithelium were longer than those in villi at all ages were confirmed by us. Still, there was no more than random co-localization between gamma-H2A.X foci and telomeres even in crypts from very old mice, indicating that senescence in the crypt enterocytes is telomere independent. The results suggest that stress-dependent cell senescence could play a causal role for aging of mice.
Key Findings
1
Findings support that stress-dependent (non-telomeric) cell senescence may play a causal role in mouse aging.
2
Frequency of cells containing DNA damage foci increases significantly with age in lung, spleen, dermis, liver and gut epithelium of C57Bl6 mice between 12 and 42 months.
3
Gamma-H2A.X immunohistochemistry (IHC) is established as a reliable quantitative indicator of cellular senescence in vitro (fibroblasts) and in vivo (hepatocytes).
4
In liver, DNA damage foci–positive cells are preferentially localized to the centrilobular area, which experiences higher oxidative stress.
5
In the intestine, formation of gamma-H2A.X foci is restricted to crypt enterocytes and is not associated with apoptosis or hyperproliferation.
6
Telomeres shorten with age in both crypt and villus enterocytes, with crypt telomeres consistently longer than villus telomeres at all ages.
7
There is at most random co-localization between gamma-H2A.X foci and telomeres, indicating crypt enterocyte senescence is largely telomere-independent.
Research Object
Tissues of aging C57Bl6 mice (lung, spleen, dermis, liver, gut epithelium and other organs) analyzed for DNA damage foci
Research Subject
Age-dependent accumulation of DNA damage response markers (gamma-H2A.X foci) and associated cellular senescence frequency, localization, telomere association, and tissue-specific patterns
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2009-04-09
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