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MDM2-Driven Ubiquitination Rapidly Removes p53 from Its Cognate Promoters

MDM2 is the principal antagonist of the tumor suppressor p53. p53 binds to its cognate DNA element within promoters and activates the transcription of adjacent genes. These target genes include MDM2. Upon induction by p53, the MDM2 protein binds and ubiquitinates p53, triggering its proteasomal degr...

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Autores principales: Henningsen, Kester Mo, Manzini, Valentina, Magerhans, Anna, Gerber, Sabrina, Dobbelstein, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773640/
https://www.ncbi.nlm.nih.gov/pubmed/35053170
http://dx.doi.org/10.3390/biom12010022
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author Henningsen, Kester Mo
Manzini, Valentina
Magerhans, Anna
Gerber, Sabrina
Dobbelstein, Matthias
author_facet Henningsen, Kester Mo
Manzini, Valentina
Magerhans, Anna
Gerber, Sabrina
Dobbelstein, Matthias
author_sort Henningsen, Kester Mo
collection PubMed
description MDM2 is the principal antagonist of the tumor suppressor p53. p53 binds to its cognate DNA element within promoters and activates the transcription of adjacent genes. These target genes include MDM2. Upon induction by p53, the MDM2 protein binds and ubiquitinates p53, triggering its proteasomal degradation and providing negative feedback. This raises the question whether MDM2 can also remove p53 from its target promoters, and whether this also involves ubiquitination. In the present paper, we employ the MDM2-targeted small molecule Nutlin-3a (Nutlin) to disrupt the interaction of MDM2 and p53 in three different cancer cell lines: SJSA-1 (osteosarcoma), 93T449 (liposarcoma; both carrying amplified MDM2), and MCF7 (breast adenocarcinoma). Remarkably, removing Nutlin from the culture medium for less than five minutes not only triggered p53 ubiquitination, but also dissociated most p53 from its chromatin binding sites, as revealed by chromatin immunoprecipitation. This also resulted in reduced p53-responsive transcription, and it occurred much earlier than the degradation of p53 by the proteasome, arguing that MDM2 removes p53 from promoters prior to and thus independent of degradation. Accordingly, the short-term pharmacological inhibition of the proteasome did not alter the removal of p53 from promoters by Nutlin washout. However, when the proteasome inhibitor was applied for several hours, depleting non-conjugated ubiquitin prior to eliminating Nutlin, this compromised the removal of DNA-bound p53, as did an E1 ubiquitin ligase inhibitor. This suggests that the ubiquitination of p53 by MDM2 is necessary for its clearance from promoters. Depleting the MDM2 cofactor MDM4 in SJSA cells did not alter the velocity by that p53 was removed from promoters upon Nutlin washout. We conclude that MDM2 antagonizes p53 not only by covering its transactivation domain and by destabilization, but also by the rapid, ubiquitin-dependent termination of p53–chromatin interactions.
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spelling pubmed-87736402022-01-21 MDM2-Driven Ubiquitination Rapidly Removes p53 from Its Cognate Promoters Henningsen, Kester Mo Manzini, Valentina Magerhans, Anna Gerber, Sabrina Dobbelstein, Matthias Biomolecules Article MDM2 is the principal antagonist of the tumor suppressor p53. p53 binds to its cognate DNA element within promoters and activates the transcription of adjacent genes. These target genes include MDM2. Upon induction by p53, the MDM2 protein binds and ubiquitinates p53, triggering its proteasomal degradation and providing negative feedback. This raises the question whether MDM2 can also remove p53 from its target promoters, and whether this also involves ubiquitination. In the present paper, we employ the MDM2-targeted small molecule Nutlin-3a (Nutlin) to disrupt the interaction of MDM2 and p53 in three different cancer cell lines: SJSA-1 (osteosarcoma), 93T449 (liposarcoma; both carrying amplified MDM2), and MCF7 (breast adenocarcinoma). Remarkably, removing Nutlin from the culture medium for less than five minutes not only triggered p53 ubiquitination, but also dissociated most p53 from its chromatin binding sites, as revealed by chromatin immunoprecipitation. This also resulted in reduced p53-responsive transcription, and it occurred much earlier than the degradation of p53 by the proteasome, arguing that MDM2 removes p53 from promoters prior to and thus independent of degradation. Accordingly, the short-term pharmacological inhibition of the proteasome did not alter the removal of p53 from promoters by Nutlin washout. However, when the proteasome inhibitor was applied for several hours, depleting non-conjugated ubiquitin prior to eliminating Nutlin, this compromised the removal of DNA-bound p53, as did an E1 ubiquitin ligase inhibitor. This suggests that the ubiquitination of p53 by MDM2 is necessary for its clearance from promoters. Depleting the MDM2 cofactor MDM4 in SJSA cells did not alter the velocity by that p53 was removed from promoters upon Nutlin washout. We conclude that MDM2 antagonizes p53 not only by covering its transactivation domain and by destabilization, but also by the rapid, ubiquitin-dependent termination of p53–chromatin interactions. MDPI 2021-12-24 /pmc/articles/PMC8773640/ /pubmed/35053170 http://dx.doi.org/10.3390/biom12010022 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Henningsen, Kester Mo
Manzini, Valentina
Magerhans, Anna
Gerber, Sabrina
Dobbelstein, Matthias
MDM2-Driven Ubiquitination Rapidly Removes p53 from Its Cognate Promoters
title MDM2-Driven Ubiquitination Rapidly Removes p53 from Its Cognate Promoters
title_full MDM2-Driven Ubiquitination Rapidly Removes p53 from Its Cognate Promoters
title_fullStr MDM2-Driven Ubiquitination Rapidly Removes p53 from Its Cognate Promoters
title_full_unstemmed MDM2-Driven Ubiquitination Rapidly Removes p53 from Its Cognate Promoters
title_short MDM2-Driven Ubiquitination Rapidly Removes p53 from Its Cognate Promoters
title_sort mdm2-driven ubiquitination rapidly removes p53 from its cognate promoters
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773640/
https://www.ncbi.nlm.nih.gov/pubmed/35053170
http://dx.doi.org/10.3390/biom12010022
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