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Targeting mutant p53-R248W reactivates WT p53 function and alters the onco-metabolic profile

TP53 is the most commonly mutated gene in cancer, and gain-of-function mutations have wide-ranging effects. Efforts to reactivate wild-type p53 function and inhibit mutant functions have been complicated by the variety of TP53 mutations. Identified from a screen, the NSC59984 compound has been shown...

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Autores principales: Brown, Kate, Jenkins, Lisa M. Miller, Crooks, Daniel R., Surman, Deborah R., Mazur, Sharlyn J., Xu, Yuan, Arimilli, Bhargav S., Yang, Ye, Lane, Andrew N., Fan, Teresa W-M., Schrump, David S., Linehan, W. Marston, Ripley, R. Taylor, Appella, Ettore
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9874945/
https://www.ncbi.nlm.nih.gov/pubmed/36713582
http://dx.doi.org/10.3389/fonc.2022.1094210
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author Brown, Kate
Jenkins, Lisa M. Miller
Crooks, Daniel R.
Surman, Deborah R.
Mazur, Sharlyn J.
Xu, Yuan
Arimilli, Bhargav S.
Yang, Ye
Lane, Andrew N.
Fan, Teresa W-M.
Schrump, David S.
Linehan, W. Marston
Ripley, R. Taylor
Appella, Ettore
author_facet Brown, Kate
Jenkins, Lisa M. Miller
Crooks, Daniel R.
Surman, Deborah R.
Mazur, Sharlyn J.
Xu, Yuan
Arimilli, Bhargav S.
Yang, Ye
Lane, Andrew N.
Fan, Teresa W-M.
Schrump, David S.
Linehan, W. Marston
Ripley, R. Taylor
Appella, Ettore
author_sort Brown, Kate
collection PubMed
description TP53 is the most commonly mutated gene in cancer, and gain-of-function mutations have wide-ranging effects. Efforts to reactivate wild-type p53 function and inhibit mutant functions have been complicated by the variety of TP53 mutations. Identified from a screen, the NSC59984 compound has been shown to restore activity to mutant p53 in colorectal cancer cells. Here, we investigated its effects on esophageal adenocarcinoma cells with specific p53 hot-spot mutations. NSC59984 treatment of cells reactivated p53 transcriptional regulation, inducing mitochondrial intrinsic apoptosis. Analysis of its effects on cellular metabolism demonstrated increased utilization of the pentose phosphate pathway and inhibition of glycolysis at the fructose-1,6-bisphosphate to fructose 6-phosphate junction. Furthermore, treatment of cells with NSC59984 increased reactive oxygen species production and decreased glutathione levels; these effects were enhanced by the addition of buthionine sulfoximine and inhibited by N-acetyl cysteine. We found that the effects of NSC59984 were substantially greater in cells harboring the p53 R248W mutation. Overall, these findings demonstrate p53-dependent effects of NSC59984 on cellular metabolism, with increased activity in cells harboring the p53 R248W mutation. This research highlights the importance of defining the mutational status of a particular cancer to create a patient-centric strategy for the treatment of p53-driven cancers.
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spelling pubmed-98749452023-01-26 Targeting mutant p53-R248W reactivates WT p53 function and alters the onco-metabolic profile Brown, Kate Jenkins, Lisa M. Miller Crooks, Daniel R. Surman, Deborah R. Mazur, Sharlyn J. Xu, Yuan Arimilli, Bhargav S. Yang, Ye Lane, Andrew N. Fan, Teresa W-M. Schrump, David S. Linehan, W. Marston Ripley, R. Taylor Appella, Ettore Front Oncol Oncology TP53 is the most commonly mutated gene in cancer, and gain-of-function mutations have wide-ranging effects. Efforts to reactivate wild-type p53 function and inhibit mutant functions have been complicated by the variety of TP53 mutations. Identified from a screen, the NSC59984 compound has been shown to restore activity to mutant p53 in colorectal cancer cells. Here, we investigated its effects on esophageal adenocarcinoma cells with specific p53 hot-spot mutations. NSC59984 treatment of cells reactivated p53 transcriptional regulation, inducing mitochondrial intrinsic apoptosis. Analysis of its effects on cellular metabolism demonstrated increased utilization of the pentose phosphate pathway and inhibition of glycolysis at the fructose-1,6-bisphosphate to fructose 6-phosphate junction. Furthermore, treatment of cells with NSC59984 increased reactive oxygen species production and decreased glutathione levels; these effects were enhanced by the addition of buthionine sulfoximine and inhibited by N-acetyl cysteine. We found that the effects of NSC59984 were substantially greater in cells harboring the p53 R248W mutation. Overall, these findings demonstrate p53-dependent effects of NSC59984 on cellular metabolism, with increased activity in cells harboring the p53 R248W mutation. This research highlights the importance of defining the mutational status of a particular cancer to create a patient-centric strategy for the treatment of p53-driven cancers. Frontiers Media S.A. 2023-01-11 /pmc/articles/PMC9874945/ /pubmed/36713582 http://dx.doi.org/10.3389/fonc.2022.1094210 Text en Copyright © 2023 Brown, Jenkins, Crooks, Surman, Mazur, Xu, Arimilli, Yang, Lane, Fan, Schrump, Linehan, Ripley and Appella https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Brown, Kate
Jenkins, Lisa M. Miller
Crooks, Daniel R.
Surman, Deborah R.
Mazur, Sharlyn J.
Xu, Yuan
Arimilli, Bhargav S.
Yang, Ye
Lane, Andrew N.
Fan, Teresa W-M.
Schrump, David S.
Linehan, W. Marston
Ripley, R. Taylor
Appella, Ettore
Targeting mutant p53-R248W reactivates WT p53 function and alters the onco-metabolic profile
title Targeting mutant p53-R248W reactivates WT p53 function and alters the onco-metabolic profile
title_full Targeting mutant p53-R248W reactivates WT p53 function and alters the onco-metabolic profile
title_fullStr Targeting mutant p53-R248W reactivates WT p53 function and alters the onco-metabolic profile
title_full_unstemmed Targeting mutant p53-R248W reactivates WT p53 function and alters the onco-metabolic profile
title_short Targeting mutant p53-R248W reactivates WT p53 function and alters the onco-metabolic profile
title_sort targeting mutant p53-r248w reactivates wt p53 function and alters the onco-metabolic profile
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9874945/
https://www.ncbi.nlm.nih.gov/pubmed/36713582
http://dx.doi.org/10.3389/fonc.2022.1094210
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