Mechanisms that enhance sustainability of p53 pulses.

The tumor suppressor p53 protein shows various dynamic responses depending on the types and extent of cellular stresses. In particular, in response to DNA damage induced by γ-irradiation, cells generate a series of p53 pulses. Recent research has shown the importance of sustaining repeated p53 pulse...

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Main Authors: Jae Kyoung Kim, Trachette L Jackson
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3670918?pdf=render
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author Jae Kyoung Kim
Trachette L Jackson
author_facet Jae Kyoung Kim
Trachette L Jackson
author_sort Jae Kyoung Kim
collection DOAJ
description The tumor suppressor p53 protein shows various dynamic responses depending on the types and extent of cellular stresses. In particular, in response to DNA damage induced by γ-irradiation, cells generate a series of p53 pulses. Recent research has shown the importance of sustaining repeated p53 pulses for recovery from DNA damage. However, far too little attention has been paid to understanding how cells can sustain p53 pulses given the complexities of genetic heterogeneity and intrinsic noise. Here, we explore potential molecular mechanisms that enhance the sustainability of p53 pulses by developing a new mathematical model of the p53 regulatory system. This model can reproduce many experimental results that describe the dynamics of p53 pulses. By simulating the model both deterministically and stochastically, we found three potential mechanisms that improve the sustainability of p53 pulses: 1) the recently identified positive feedback loop between p53 and Rorα allows cells to sustain p53 pulses with high amplitude over a wide range of conditions, 2) intrinsic noise can often prevent the dampening of p53 pulses even after mutations, and 3) coupling of p53 pulses in neighboring cells via cytochrome-c significantly reduces the chance of failure in sustaining p53 pulses in the presence of heterogeneity among cells. Finally, in light of these results, we propose testable experiments that can reveal important mechanisms underlying p53 dynamics.
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spelling doaj.art-6c130d95a7504dc2b2b582da371c17d22022-12-22T03:38:22ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0186e6524210.1371/journal.pone.0065242Mechanisms that enhance sustainability of p53 pulses.Jae Kyoung KimTrachette L JacksonThe tumor suppressor p53 protein shows various dynamic responses depending on the types and extent of cellular stresses. In particular, in response to DNA damage induced by γ-irradiation, cells generate a series of p53 pulses. Recent research has shown the importance of sustaining repeated p53 pulses for recovery from DNA damage. However, far too little attention has been paid to understanding how cells can sustain p53 pulses given the complexities of genetic heterogeneity and intrinsic noise. Here, we explore potential molecular mechanisms that enhance the sustainability of p53 pulses by developing a new mathematical model of the p53 regulatory system. This model can reproduce many experimental results that describe the dynamics of p53 pulses. By simulating the model both deterministically and stochastically, we found three potential mechanisms that improve the sustainability of p53 pulses: 1) the recently identified positive feedback loop between p53 and Rorα allows cells to sustain p53 pulses with high amplitude over a wide range of conditions, 2) intrinsic noise can often prevent the dampening of p53 pulses even after mutations, and 3) coupling of p53 pulses in neighboring cells via cytochrome-c significantly reduces the chance of failure in sustaining p53 pulses in the presence of heterogeneity among cells. Finally, in light of these results, we propose testable experiments that can reveal important mechanisms underlying p53 dynamics.http://europepmc.org/articles/PMC3670918?pdf=render
spellingShingle Jae Kyoung Kim
Trachette L Jackson
Mechanisms that enhance sustainability of p53 pulses.
PLoS ONE
title Mechanisms that enhance sustainability of p53 pulses.
title_full Mechanisms that enhance sustainability of p53 pulses.
title_fullStr Mechanisms that enhance sustainability of p53 pulses.
title_full_unstemmed Mechanisms that enhance sustainability of p53 pulses.
title_short Mechanisms that enhance sustainability of p53 pulses.
title_sort mechanisms that enhance sustainability of p53 pulses
url http://europepmc.org/articles/PMC3670918?pdf=render
work_keys_str_mv AT jaekyoungkim mechanismsthatenhancesustainabilityofp53pulses
AT trachetteljackson mechanismsthatenhancesustainabilityofp53pulses