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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Removing all obstacles: a critical role for p53 in promoting tissue renewal
David W Schoppy1, Yaroslava Ruzankina, Eric J Brown
1Abramson Family Cancer Research Institute, Philadelphia, PA, USA.
Abstract:
Defects in DNA repair pathways or exposure to high levels of DNA damaging agents limit the renewal potential of adult tissues and accelerate the development of age-related degenerative pathologies. Many studies suggest these tissue homeostatic defects can result from the accumulation of DNA damage in tissue-specific stem cells. Although maintenance of genome integrity in progenitor cells is required for the renewal of adult tissues, recent studies have highlighted the importance of additional mechanisms that facilitate and direct the process of tissue regeneration. These reports indicate that the p53 tumor suppressor gene maintains adult tissue homeostasis and promotes tissue renewal by suppressing the accumulation of DNA-damaged cells. Without p53, tissue deterioration caused by the elimination of genome maintenance regulators (ATR, Hus1 or Terc) is exacerbated and, in some cases, leads to synthetic lethality at the organismal level. Importantly, the accumulation of highly damaged cells in multiple tissues appears to severely impede regeneration from undamaged progenitors, suggesting that p53-mediated removal of damaged cells is a prerequisite for efficient progenitor driven renewal. These findings argue that tissue homeostasis is governed not only by the intrinsic repopulating potential of competent progenitors, but also by mechanisms that limit the accumulation of defective cells and, thereby, promote compensatory regeneration. As discussed in this review, these findings advance our understanding of mechanisms that counter the effects of DNA damage at the tissue level and have important implications for the development of therapeutic approaches to combating age-related pathologies and p53-deficient malignancies.
Insights
The p53 tumor suppressor is crucial for tissue renewal and preventing age-related diseases by clearing damaged cells. Its absence exacerbates DNA damage, hindering regeneration and potentially causing synthetic lethality.
Area of Science:
- Cellular Biology
- Genetics
- Regenerative Medicine
Background:
- DNA damage accumulation in stem cells impairs tissue renewal and accelerates aging.
- Genome integrity in progenitor cells is vital for adult tissue regeneration.
Purpose of the Study:
- To review the role of p53 in maintaining adult tissue homeostasis and promoting regeneration.
- To explore how p53 suppresses DNA-damaged cell accumulation and facilitates tissue renewal.
Main Methods:
- Review of existing literature on DNA repair, p53 function, and tissue regeneration.
- Analysis of studies investigating the impact of p53 deficiency on tissue homeostasis and regeneration.
Main Results:
- p53 actively maintains tissue homeostasis by preventing the accumulation of DNA-damaged cells.
- Loss of p53 worsens tissue deterioration from DNA repair defects and impedes regeneration.
- Accumulated damaged cells hinder regeneration even in the presence of healthy progenitors.
Conclusions:
- Tissue homeostasis relies on both progenitor potential and mechanisms that eliminate defective cells.
- p53-mediated removal of damaged cells is essential for effective progenitor-driven tissue renewal.
- Understanding these mechanisms offers therapeutic potential for age-related diseases and p53-deficient cancers.
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