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Senescence delay of human diploid fibroblast induced by anti-sense p16INK4a expression
1Department of Biochemistry and Molecular Biology, Health Science Center, Peking University, Beijing 100083, People's Republic of China.
Abstract:
p16(INK4a), a tumor suppressor gene that inhibits cyclin-dependent kinase 4 and cyclin-dependent kinase 6, is also implicated in the mechanisms underlying replicative senescence, because its RNA and protein accumulate as cells approach their finite number of population doublings in tissue culture. To further explore the involvement of p16(INK4a) in replicative senescence, we constructed a retroviral vector containing antisense p16(INK4a), pDOR-ASp16, and introduced it into early passages of human diploid fibroblasts. The introduction of this construct significantly suppressed the expression of wild-type p16(INK4a). It also imposed a finite increase in proliferative life span and significant delay of several other cell senescent features, such as cell flattening, cell cycle arrest, and senescence-associated beta-galactosidase positivity. Moreover, telomere shortening and decline in DNA repair capacity, which normally accompany cell senescence, are also postponed by the ASp16 transfection. The life span of fibroblasts was significantly extended, but the onset of replicative senescence could not be totally prevented. Telomerase could not be activated even though telomere shortening was slowed. These observations suggest that the telomere pathway of senescence cannot be bypassed by ASp16 expression. These data not only strongly support a role for p16(INK4a) in replicative senescence but also raise the possibility of using the antisense p16(INK4a) therapeutically.
Insights
Antisense p16(INK4a) (ASp16) delays cellular senescence in human fibroblasts by suppressing p16(INK4a) expression. While extending cell lifespan, ASp16 did not prevent senescence entirely or activate telomerase.
Area of Science:
- Cellular senescence
- Molecular biology
- Tumor suppressor genes
Background:
- p16(INK4a) is a tumor suppressor gene inhibiting CDK4 and CDK6.
- p16(INK4a) expression increases with replicative senescence in human cells.
- Cellular senescence limits the proliferative lifespan of normal cells.
Purpose of the Study:
- To investigate the role of p16(INK4a) in replicative senescence.
- To determine if suppressing p16(INK4a) can extend cellular lifespan.
- To explore the therapeutic potential of antisense p16(INK4a).
Main Methods:
- Constructed a retroviral vector (pDOR-ASp16) expressing antisense p16(INK4a).
- Introduced pDOR-ASp16 into early-passage human diploid fibroblasts.
- Assessed p16(INK4a) expression, cell proliferation, senescence markers, telomere length, and DNA repair capacity.
Main Results:
- ASp16 significantly suppressed wild-type p16(INK4a) expression.
- ASp16 extended the proliferative lifespan of fibroblasts and delayed senescence markers.
- Telomere shortening and DNA repair decline were postponed, but senescence onset was not fully prevented.
Conclusions:
- p16(INK4a) plays a crucial role in replicative senescence.
- Antisense p16(INK4a) can delay, but not completely block, cellular senescence.
- Antisense p16(INK4a) shows potential for therapeutic applications in age-related diseases.