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Small molecule restoration of wildtype structure and function of mutant p53 using a novel zinc-metallochaperone based mechanism

NSC319726 (ZMC1) is a small molecule that reactivates mutant p53 by restoration of WT structure/function to the most common p53 missense mutant (p53-R175H). We investigated the mechanism by which ZMC1 reactivates p53-R175H and provide evidence that ZMC1: 1) restores WT structure by functioning as a...

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Autores principales: Yu, Xin, Blanden, Adam R., Narayanan, Sumana, Jayakumar, Lalithapriya, Lubin, David, Augeri, David, David Kimball, S., Loh, Stewart N., Carpizo, Darren R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4253404/
https://www.ncbi.nlm.nih.gov/pubmed/25294809
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author Yu, Xin
Blanden, Adam R.
Narayanan, Sumana
Jayakumar, Lalithapriya
Lubin, David
Augeri, David
David Kimball, S.
Loh, Stewart N.
Carpizo, Darren R.
author_facet Yu, Xin
Blanden, Adam R.
Narayanan, Sumana
Jayakumar, Lalithapriya
Lubin, David
Augeri, David
David Kimball, S.
Loh, Stewart N.
Carpizo, Darren R.
author_sort Yu, Xin
collection PubMed
description NSC319726 (ZMC1) is a small molecule that reactivates mutant p53 by restoration of WT structure/function to the most common p53 missense mutant (p53-R175H). We investigated the mechanism by which ZMC1 reactivates p53-R175H and provide evidence that ZMC1: 1) restores WT structure by functioning as a zinc-metallochaperone, providing an optimal concentration of zinc to facilitate proper folding; and 2) increases cellular reactive oxygen species that transactivate the newly conformed p53-R175H (via post-translational modifications), inducing an apoptotic program. We not only demonstrate that this zinc metallochaperone function is possessed by other zinc-binding small molecules, but that it can reactivate other p53 mutants with impaired zinc binding. This represents a novel mechanism for an anti-cancer drug and a new pathway to drug mutant p53. Significance: We have elucidated a novel mechanism to restore wild-type structure/function to mutant p53 using small molecules functioning as zinc-metallochaperones. The pharmacologic delivery of a metal ion to restore proper folding of a mutant protein is unique to medicinal chemistry and represents a new pathway to drug mutant p53.
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spelling pubmed-42534042014-12-03 Small molecule restoration of wildtype structure and function of mutant p53 using a novel zinc-metallochaperone based mechanism Yu, Xin Blanden, Adam R. Narayanan, Sumana Jayakumar, Lalithapriya Lubin, David Augeri, David David Kimball, S. Loh, Stewart N. Carpizo, Darren R. Oncotarget Priority Research Paper NSC319726 (ZMC1) is a small molecule that reactivates mutant p53 by restoration of WT structure/function to the most common p53 missense mutant (p53-R175H). We investigated the mechanism by which ZMC1 reactivates p53-R175H and provide evidence that ZMC1: 1) restores WT structure by functioning as a zinc-metallochaperone, providing an optimal concentration of zinc to facilitate proper folding; and 2) increases cellular reactive oxygen species that transactivate the newly conformed p53-R175H (via post-translational modifications), inducing an apoptotic program. We not only demonstrate that this zinc metallochaperone function is possessed by other zinc-binding small molecules, but that it can reactivate other p53 mutants with impaired zinc binding. This represents a novel mechanism for an anti-cancer drug and a new pathway to drug mutant p53. Significance: We have elucidated a novel mechanism to restore wild-type structure/function to mutant p53 using small molecules functioning as zinc-metallochaperones. The pharmacologic delivery of a metal ion to restore proper folding of a mutant protein is unique to medicinal chemistry and represents a new pathway to drug mutant p53. Impact Journals LLC 2014-09-03 /pmc/articles/PMC4253404/ /pubmed/25294809 Text en Copyright: © 2014 Yu et al. http://creativecommons.org/licenses/by/2.5/ 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 Priority Research Paper
Yu, Xin
Blanden, Adam R.
Narayanan, Sumana
Jayakumar, Lalithapriya
Lubin, David
Augeri, David
David Kimball, S.
Loh, Stewart N.
Carpizo, Darren R.
Small molecule restoration of wildtype structure and function of mutant p53 using a novel zinc-metallochaperone based mechanism
title Small molecule restoration of wildtype structure and function of mutant p53 using a novel zinc-metallochaperone based mechanism
title_full Small molecule restoration of wildtype structure and function of mutant p53 using a novel zinc-metallochaperone based mechanism
title_fullStr Small molecule restoration of wildtype structure and function of mutant p53 using a novel zinc-metallochaperone based mechanism
title_full_unstemmed Small molecule restoration of wildtype structure and function of mutant p53 using a novel zinc-metallochaperone based mechanism
title_short Small molecule restoration of wildtype structure and function of mutant p53 using a novel zinc-metallochaperone based mechanism
title_sort small molecule restoration of wildtype structure and function of mutant p53 using a novel zinc-metallochaperone based mechanism
topic Priority Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4253404/
https://www.ncbi.nlm.nih.gov/pubmed/25294809
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