Oncogenic alterations in the p53 pathway abolish oscillatory competence
Xiong, L.; Garfinkel, A.
Show abstract
The tumor suppressor p53 displays concentration oscillations in response to DNA damage, a behavior that has been suggested to be essential to its anti-cancer function. Many genetic alterations in the p53 pathway have been shown to be oncogenic, whether by experiment or by clinical associations with various cancers. These oncogenic alterations include somatic mutations, copy number variations and inherited polymorphisms. Using a differential equation model of p53-Mdm2 dynamics, we employ Hopf bifurcation analysis to show that all of the oncogenic perturbations have a common effect, to abolish the oscillatory competence of p53, thereby impairing its tumor suppressor function. In this analysis, these diverse genetic alterations, widely observed in human cancers, have a unified mechanistic explanation. SignificanceIn human cancers, the p53 tumor suppressor pathway is frequently altered by diverse genetic changes. An integrated understanding of these oncogenic alterations is currently lacking. We show that all oncogenic alterations in the p53 pathway abolish the oscillatory competence of p53, a property that is essential for cell cycle arrest upon stress, for effective DNA damage response and for maintaining genome integrity. This unified dynamical explanation of distinct cancer driver events that converge on a key cancer hallmark pathway has practical implications for anti-cancer therapies.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A prefrontal network model operating near steady and oscillatory states links spike desynchronization and synaptic deficits in schizophrenia 95%
- Mechanisms underlying the response of mouse cortical networks to optogenetic manipulation 95%
- Self-inhibiting percolation and viral spreading in epithelial tissue 94%
Similar papers in this journal
Similar papers in this journal
- The ups and downs of biological oscillators: A comparison of time-delayed negative feedback mechanisms 94%
- Mathematical deconvolution of CAR T-cell proliferation and exhaustion from real-time killing assay data 93%
- Role of cell polarity dynamics and motility in pattern formation due to contact dependent signalling 93%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.