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Updated: Oct 25, 2025

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
NUAK2 and RCan2 participate in the p53 mutant pro-tumorigenic network
Eleonora Mammarella1, Carlotta Zampieri1, Emanuele Panatta1
1Department of Experimental Medicine, TOR, University of Rome Tor Vergata, 00133, Rome, Italy.
Abstract:
Most inactivating mutations in TP53 gene generates neomorphic forms of p53 proteins that experimental evidence and clinical observations suggest to exert gain-of-function effects. While massive effort has been deployed in the dissection of wild type p53 transcriptional programme, p53 mutant pro-tumorigenic gene network is still largely elusive. To help dissecting the molecular basis of p53 mutant GOF, we performed an analysis of a fully annotated genomic and transcriptomic human pancreatic adenocarcinoma to select candidate players of p53 mutant network on the basis their differential expression between p53 mutant and p53 wild-type cohorts and their prognostic value. We identified NUAK2 and RCan2 whose p53 mutant GOF-dependent regulation was further validated in pancreatic cancer cellular model. Our data demonstrated that p53R270H can physically bind RCan2 gene locus in regulatory regions corresponding to the chromatin permissive areas where known binding partners of p53 mutant, such as p63 and Srebp, bind. Overall, starting from clinically relevant data and progressing into experimental validation, our work suggests NUAK2 and RCan2 as novel candidate players of the p53 mutant pro-tumorigenic network whose prognostic and therapeutic interest might attract future studies.
Insights
Mutant TP53 proteins can promote cancer through gain-of-function (GOF) effects. This study identifies NUAK2 and RCan2 as novel targets in the mutant p53 pro-tumorigenic network, offering potential prognostic and therapeutic avenues.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- TP53 gene mutations often create neomorphic p53 proteins with gain-of-function (GOF) pro-tumorigenic effects.
- The transcriptional network of mutant p53 is not well understood, hindering therapeutic development.
Purpose of the Study:
- To identify novel genes involved in the mutant p53 GOF pro-tumorigenic network.
- To investigate the prognostic and therapeutic potential of identified genes in pancreatic cancer.
Main Methods:
- Analysis of genomic and transcriptomic data from human pancreatic adenocarcinoma.
- Selection of candidate genes based on differential expression and prognostic value between mutant and wild-type p53 cohorts.
- Experimental validation in pancreatic cancer cellular models.
Main Results:
- NUAK2 and RCan2 were identified as candidate genes regulated by mutant p53 GOF.
- The regulation of NUAK2 and RCan2 by mutant p53 GOF was validated in a pancreatic cancer cell model.
- Specific binding of p53R270H to the RCan2 gene locus was demonstrated.
Conclusions:
- NUAK2 and RCan2 are suggested as novel players in the p53 mutant pro-tumorigenic network.
- These genes hold potential prognostic and therapeutic significance for future research in pancreatic cancer.
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