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ID4 regulates transcriptional activity of wild type and mutant p53 via K373 acetylation

Given that mutated p53 (50% of all human cancers) is over-expressed in many cancers, restoration of mutant p53 to its wild type biological function has been sought after as cancer therapy. The conformational flexibility has allowed to restore the normal biological function of mutant p53 by short pep...

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Autores principales: Morton, Derrick J, Patel, Divya, Joshi, Jugal, Hunt, Aisha, Knowell, Ashley E, Chaudhary, Jaideep
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5356822/
https://www.ncbi.nlm.nih.gov/pubmed/27911860
http://dx.doi.org/10.18632/oncotarget.13701
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author Morton, Derrick J
Patel, Divya
Joshi, Jugal
Hunt, Aisha
Knowell, Ashley E
Chaudhary, Jaideep
author_facet Morton, Derrick J
Patel, Divya
Joshi, Jugal
Hunt, Aisha
Knowell, Ashley E
Chaudhary, Jaideep
author_sort Morton, Derrick J
collection PubMed
description Given that mutated p53 (50% of all human cancers) is over-expressed in many cancers, restoration of mutant p53 to its wild type biological function has been sought after as cancer therapy. The conformational flexibility has allowed to restore the normal biological function of mutant p53 by short peptides and small molecule compounds. Recently, studies have focused on physiological mechanisms such as acetylation of lysine residues to rescue the wild type activity of mutant p53. Using p53 null prostate cancer cell line we show that ID4 dependent acetylation promotes mutant p53 DNA-binding capabilities to its wild type consensus sequence, thus regulating p53-dependent target genes leading to subsequent cell cycle arrest and apoptosis. Specifically, by using wild type, mutant (P223L, V274F, R175H, R273H), acetylation mimics (K320Q and K373Q) and non-acetylation mimics (K320R and K373R) of p53, we identify that ID4 promotes acetylation of K373 and to a lesser extent K320, in turn restoring p53-dependent biological activities. Together, our data provides a molecular understanding of ID4 dependent acetylation that suggests a strategy of enhancing p53 acetylation at sites K373 and K320 that may serve as a viable mechanism of physiological restoration of mutant p53 to its wild type biological function.
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spelling pubmed-53568222017-04-20 ID4 regulates transcriptional activity of wild type and mutant p53 via K373 acetylation Morton, Derrick J Patel, Divya Joshi, Jugal Hunt, Aisha Knowell, Ashley E Chaudhary, Jaideep Oncotarget Research Paper Given that mutated p53 (50% of all human cancers) is over-expressed in many cancers, restoration of mutant p53 to its wild type biological function has been sought after as cancer therapy. The conformational flexibility has allowed to restore the normal biological function of mutant p53 by short peptides and small molecule compounds. Recently, studies have focused on physiological mechanisms such as acetylation of lysine residues to rescue the wild type activity of mutant p53. Using p53 null prostate cancer cell line we show that ID4 dependent acetylation promotes mutant p53 DNA-binding capabilities to its wild type consensus sequence, thus regulating p53-dependent target genes leading to subsequent cell cycle arrest and apoptosis. Specifically, by using wild type, mutant (P223L, V274F, R175H, R273H), acetylation mimics (K320Q and K373Q) and non-acetylation mimics (K320R and K373R) of p53, we identify that ID4 promotes acetylation of K373 and to a lesser extent K320, in turn restoring p53-dependent biological activities. Together, our data provides a molecular understanding of ID4 dependent acetylation that suggests a strategy of enhancing p53 acetylation at sites K373 and K320 that may serve as a viable mechanism of physiological restoration of mutant p53 to its wild type biological function. Impact Journals LLC 2016-11-29 /pmc/articles/PMC5356822/ /pubmed/27911860 http://dx.doi.org/10.18632/oncotarget.13701 Text en Copyright: © 2017 Morton et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Morton, Derrick J
Patel, Divya
Joshi, Jugal
Hunt, Aisha
Knowell, Ashley E
Chaudhary, Jaideep
ID4 regulates transcriptional activity of wild type and mutant p53 via K373 acetylation
title ID4 regulates transcriptional activity of wild type and mutant p53 via K373 acetylation
title_full ID4 regulates transcriptional activity of wild type and mutant p53 via K373 acetylation
title_fullStr ID4 regulates transcriptional activity of wild type and mutant p53 via K373 acetylation
title_full_unstemmed ID4 regulates transcriptional activity of wild type and mutant p53 via K373 acetylation
title_short ID4 regulates transcriptional activity of wild type and mutant p53 via K373 acetylation
title_sort id4 regulates transcriptional activity of wild type and mutant p53 via k373 acetylation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5356822/
https://www.ncbi.nlm.nih.gov/pubmed/27911860
http://dx.doi.org/10.18632/oncotarget.13701
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