The p16INK4a tumor suppressor protein functions as a cyclin-dependent kinase inhibitor, preventing phosphorylation of the retinoblastoma protein and consequently arresting the cell cycle in the G1-phase. Together with p53 and p21CIP1 it has an important function in inducing permanent cell cycle arrest, called senescence, in response to all sorts of cellular damage. Bypass of these senescence pathways has been shown to be associated with increased occurrence of multiple malignancies. In this review we focus on the role of p16INK4a in cellular senescence, its tumor suppression potential and its effect on aging. Also, the consequences of senescence in cancer therapy and its possible side-effects are considered. p16INK4a expression in periphera...
Cellular senescence is a stress response of stable growth arrest mediated by the CDK inhibitors p16 ...
Aims: Breast cancer is a hormonally driven disease. Cellular senescence is an age-related irreversib...
Expression of the p16INK4a tumor suppressor sharply increases with age in most mammalian tissues, an...
Contains fulltext : 96729.pdf (publisher's version ) (Closed access)Advanced age i...
Cyclin-dependent kinase inhibitor p16(INK4a) is implicated in replicative senescence, cell immortali...
Aging is generally considered to be the consequence of stem cell attrition caused by the activity of...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
The p16INK4a tumor suppressor protein functions as an inhibitor ofCDK4andCDK6, the D-type cyclin-dep...
The p16INK4a-Rb tumour suppressor pathway is required for the initiation and maintenance of cellular...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Item does not contain fulltextCellular senescence, a stress-induced irreversible growth arrest often...
Cellular senescence is a stress response of stable growth arrest mediated by the CDK inhibitors p16 ...
Aims: Breast cancer is a hormonally driven disease. Cellular senescence is an age-related irreversib...
Expression of the p16INK4a tumor suppressor sharply increases with age in most mammalian tissues, an...
Contains fulltext : 96729.pdf (publisher's version ) (Closed access)Advanced age i...
Cyclin-dependent kinase inhibitor p16(INK4a) is implicated in replicative senescence, cell immortali...
Aging is generally considered to be the consequence of stem cell attrition caused by the activity of...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
The p16INK4a tumor suppressor protein functions as an inhibitor ofCDK4andCDK6, the D-type cyclin-dep...
The p16INK4a-Rb tumour suppressor pathway is required for the initiation and maintenance of cellular...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, bu...
Item does not contain fulltextCellular senescence, a stress-induced irreversible growth arrest often...
Cellular senescence is a stress response of stable growth arrest mediated by the CDK inhibitors p16 ...
Aims: Breast cancer is a hormonally driven disease. Cellular senescence is an age-related irreversib...
Expression of the p16INK4a tumor suppressor sharply increases with age in most mammalian tissues, an...