Mechanisms of Cellular Senescence: Cell Cycle Arrest and Senescence Associated Secretory Phenotype

Механизмы клеточного старения: остановка клеточного цикла и секреторный фенотип, ассоциированный со старением
Ruchi Kumari, Parmjit Jat
2021-03-29

cell cycle arrestcellular senescencep53/p21 and p16/pRB pathwayssenescence-associated secretory phenotypetumor suppressor pathways
Cellular senescence is a stable cell cycle arrest that can be triggered in normal cells in response to various intrinsic and extrinsic stimuli, as well as developmental signals. Senescence is considered to be a highly dynamic, multi-step process, during which the properties of senescent cells continuously evolve and diversify in a context dependent manner. It is associated with multiple cellular and molecular changes and distinct phenotypic alterations, including a stable proliferation arrest unresponsive to mitogenic stimuli. Senescent cells remain viable, have alterations in metabolic activity and undergo dramatic changes in gene expression and develop a complex senescence-associated secretory phenotype. Cellular senescence can compromise tissue repair and regeneration, thereby contributing toward aging. Removal of senescent cells can attenuate age-related tissue dysfunction and extend health span. Senescence can also act as a potent anti-tumor mechanism, by preventing proliferation of potentially cancerous cells. It is a cellular program which acts as a double-edged sword, with both beneficial and detrimental effects on the health of the organism, and considered to be an example of evolutionary antagonistic pleiotropy. Activation of the p53/p21 WAF1/CIP1 and p16 INK4A /pRB tumor suppressor pathways play a central role in regulating senescence. Several other pathways have recently been implicated in mediating senescence and the senescent phenotype. Herein we review the molecular mechanisms that underlie cellular senescence and the senescence associated growth arrest with a particular focus on why cells stop dividing, the stability of the growth arrest, the hypersecretory phenotype and how the different pathways are all integrated.
1
Cellular senescence is a stable, mitogen-insensitive cell-cycle arrest induced by diverse intrinsic, extrinsic, and developmental signals.
2
Senescence can impair tissue repair and regeneration and contribute to aging, while removal of senescent cells may reduce age-related tissue dysfunction and extend health span.
3
Senescence has opposing effects: it suppresses proliferation of potentially cancerous cells but can promote tissue dysfunction, exemplifying evolutionary antagonistic pleiotropy.
4
Senescent cells remain viable but undergo metabolic, gene-expression, and phenotypic changes, including development of a complex senescence-associated secretory phenotype.
5
The p53/p21WAF1/CIP1 and p16INK4A/pRB tumor-suppressor pathways are central regulators of senescence, alongside additional pathways that integrate the senescent phenotype.

cellular senescence in normal and senescent cells

molecular mechanisms underlying senescence-associated stable cell-cycle arrest and the senescence-associated secretory phenotype

Publication Details
Publication Date
2021-03-29
Journal
Publisher
ISSN
Cited by
1655
Access Type
Author Information
Authors
Ruchi Kumari
Parmjit Jat
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%