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Specific Recognition of p53 Tetramers by Peptides Derived from p53 Interacting Proteins

Oligomerization plays a major role in regulating the activity of many proteins, and in modulating their interactions. p53 is a homotetrameric transcription factor that has a pivotal role in tumor suppression. Its tetramerization domain is contained within its C-terminal domain, which is a site for n...

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Autores principales: Gabizon, Ronen, Brandt, Tobias, Sukenik, Shahar, Lahav, Noa, Lebendiker, Mario, Shalev, Deborah E., Veprintsev, Dmitry, Friedler, Assaf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3365014/
https://www.ncbi.nlm.nih.gov/pubmed/22693587
http://dx.doi.org/10.1371/journal.pone.0038060
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author Gabizon, Ronen
Brandt, Tobias
Sukenik, Shahar
Lahav, Noa
Lebendiker, Mario
Shalev, Deborah E.
Veprintsev, Dmitry
Friedler, Assaf
author_facet Gabizon, Ronen
Brandt, Tobias
Sukenik, Shahar
Lahav, Noa
Lebendiker, Mario
Shalev, Deborah E.
Veprintsev, Dmitry
Friedler, Assaf
author_sort Gabizon, Ronen
collection PubMed
description Oligomerization plays a major role in regulating the activity of many proteins, and in modulating their interactions. p53 is a homotetrameric transcription factor that has a pivotal role in tumor suppression. Its tetramerization domain is contained within its C-terminal domain, which is a site for numerous protein-protein interactions. Those can either depend on or regulate p53 oligomerization. Here we screened an array of peptides derived from proteins known to bind the tetrameric p53 C-terminal domain (p53CTD) and identified ten binding peptides. We quantitatively characterized their binding to p53CTD using fluorescence anisotropy. The peptides bound tetrameric p53CTD with micromolar affinities. Despite the high charge of the binding peptides, electrostatics contributed only mildly to the interactions. NMR studies indicated that the peptides bound p53CTD at defined sites. The most significant chemical shift deviations were observed for the peptides WS100B(81–92), which bound directly to the p53 tetramerization domain, and PKCα(281–295), which stabilized p53CTD in circular dichroism thermal denaturation studies. Using analytical ultracentrifugation, we found that several of the peptides bound preferentially to p53 tetramers. Our results indicate that the protein-protein interactions of p53 are dependent on the oligomerization state of p53. We conclude that peptides may be used to regulate the oligomerization of p53.
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spelling pubmed-33650142012-06-12 Specific Recognition of p53 Tetramers by Peptides Derived from p53 Interacting Proteins Gabizon, Ronen Brandt, Tobias Sukenik, Shahar Lahav, Noa Lebendiker, Mario Shalev, Deborah E. Veprintsev, Dmitry Friedler, Assaf PLoS One Research Article Oligomerization plays a major role in regulating the activity of many proteins, and in modulating their interactions. p53 is a homotetrameric transcription factor that has a pivotal role in tumor suppression. Its tetramerization domain is contained within its C-terminal domain, which is a site for numerous protein-protein interactions. Those can either depend on or regulate p53 oligomerization. Here we screened an array of peptides derived from proteins known to bind the tetrameric p53 C-terminal domain (p53CTD) and identified ten binding peptides. We quantitatively characterized their binding to p53CTD using fluorescence anisotropy. The peptides bound tetrameric p53CTD with micromolar affinities. Despite the high charge of the binding peptides, electrostatics contributed only mildly to the interactions. NMR studies indicated that the peptides bound p53CTD at defined sites. The most significant chemical shift deviations were observed for the peptides WS100B(81–92), which bound directly to the p53 tetramerization domain, and PKCα(281–295), which stabilized p53CTD in circular dichroism thermal denaturation studies. Using analytical ultracentrifugation, we found that several of the peptides bound preferentially to p53 tetramers. Our results indicate that the protein-protein interactions of p53 are dependent on the oligomerization state of p53. We conclude that peptides may be used to regulate the oligomerization of p53. Public Library of Science 2012-05-31 /pmc/articles/PMC3365014/ /pubmed/22693587 http://dx.doi.org/10.1371/journal.pone.0038060 Text en Gabizon et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Gabizon, Ronen
Brandt, Tobias
Sukenik, Shahar
Lahav, Noa
Lebendiker, Mario
Shalev, Deborah E.
Veprintsev, Dmitry
Friedler, Assaf
Specific Recognition of p53 Tetramers by Peptides Derived from p53 Interacting Proteins
title Specific Recognition of p53 Tetramers by Peptides Derived from p53 Interacting Proteins
title_full Specific Recognition of p53 Tetramers by Peptides Derived from p53 Interacting Proteins
title_fullStr Specific Recognition of p53 Tetramers by Peptides Derived from p53 Interacting Proteins
title_full_unstemmed Specific Recognition of p53 Tetramers by Peptides Derived from p53 Interacting Proteins
title_short Specific Recognition of p53 Tetramers by Peptides Derived from p53 Interacting Proteins
title_sort specific recognition of p53 tetramers by peptides derived from p53 interacting proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3365014/
https://www.ncbi.nlm.nih.gov/pubmed/22693587
http://dx.doi.org/10.1371/journal.pone.0038060
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