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Structure of a Stapled Peptide Antagonist Bound to Nutlin-Resistant Mdm2

As key negative regulator of the p53 tumour suppressor, Mdm2 is an attractive therapeutic target. Small molecules such as Nutlin have been developed to antagonise Mdm2, resulting in p53-dependent death of tumour cells. We have recently described a mutation in Mdm2 (M62A), which precludes binding of...

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Autores principales: Chee, Sharon Min Qi, Wongsantichon, Jantana, Soo Tng, Quah, Robinson, Robert, Joseph, Thomas L., Verma, Chandra, Lane, David P., Brown, Christopher J., Ghadessy, Farid J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4130638/
https://www.ncbi.nlm.nih.gov/pubmed/25115702
http://dx.doi.org/10.1371/journal.pone.0104914
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author Chee, Sharon Min Qi
Wongsantichon, Jantana
Soo Tng, Quah
Robinson, Robert
Joseph, Thomas L.
Verma, Chandra
Lane, David P.
Brown, Christopher J.
Ghadessy, Farid J.
author_facet Chee, Sharon Min Qi
Wongsantichon, Jantana
Soo Tng, Quah
Robinson, Robert
Joseph, Thomas L.
Verma, Chandra
Lane, David P.
Brown, Christopher J.
Ghadessy, Farid J.
author_sort Chee, Sharon Min Qi
collection PubMed
description As key negative regulator of the p53 tumour suppressor, Mdm2 is an attractive therapeutic target. Small molecules such as Nutlin have been developed to antagonise Mdm2, resulting in p53-dependent death of tumour cells. We have recently described a mutation in Mdm2 (M62A), which precludes binding of Nutlin, but not p53. This Nutlin-resistant variant is not, however, refractory to binding and inhibition by stapled peptide antagonists targeting the same region of Mdm2. A detailed understanding of how stapled peptides are recalcitrant to Mdm2 mutations conferring Nutlin-resistance will aid in the further development of potent Mdm2 antagonists. Here, we report the 2.00 Å crystal structure of a stapled peptide antagonist bound to Nutlin resistant Mdm2. The stapled peptide relies on an extended network of interactions along the hydrophobic binding cleft of Mdm2 for high affinity binding. Additionally, as seen in other stapled peptide structures, the hydrocarbon staple itself contributes to binding through favourable interactions with Mdm2. The structure highlights the intrinsic plasticity present in both Mdm2 and the hydrocarbon staple moiety, and can be used to guide future iterations of both small molecules and stapled peptides for improved antagonists of Mdm2.
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spelling pubmed-41306382014-08-14 Structure of a Stapled Peptide Antagonist Bound to Nutlin-Resistant Mdm2 Chee, Sharon Min Qi Wongsantichon, Jantana Soo Tng, Quah Robinson, Robert Joseph, Thomas L. Verma, Chandra Lane, David P. Brown, Christopher J. Ghadessy, Farid J. PLoS One Research Article As key negative regulator of the p53 tumour suppressor, Mdm2 is an attractive therapeutic target. Small molecules such as Nutlin have been developed to antagonise Mdm2, resulting in p53-dependent death of tumour cells. We have recently described a mutation in Mdm2 (M62A), which precludes binding of Nutlin, but not p53. This Nutlin-resistant variant is not, however, refractory to binding and inhibition by stapled peptide antagonists targeting the same region of Mdm2. A detailed understanding of how stapled peptides are recalcitrant to Mdm2 mutations conferring Nutlin-resistance will aid in the further development of potent Mdm2 antagonists. Here, we report the 2.00 Å crystal structure of a stapled peptide antagonist bound to Nutlin resistant Mdm2. The stapled peptide relies on an extended network of interactions along the hydrophobic binding cleft of Mdm2 for high affinity binding. Additionally, as seen in other stapled peptide structures, the hydrocarbon staple itself contributes to binding through favourable interactions with Mdm2. The structure highlights the intrinsic plasticity present in both Mdm2 and the hydrocarbon staple moiety, and can be used to guide future iterations of both small molecules and stapled peptides for improved antagonists of Mdm2. Public Library of Science 2014-08-12 /pmc/articles/PMC4130638/ /pubmed/25115702 http://dx.doi.org/10.1371/journal.pone.0104914 Text en © 2014 Chee 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
Chee, Sharon Min Qi
Wongsantichon, Jantana
Soo Tng, Quah
Robinson, Robert
Joseph, Thomas L.
Verma, Chandra
Lane, David P.
Brown, Christopher J.
Ghadessy, Farid J.
Structure of a Stapled Peptide Antagonist Bound to Nutlin-Resistant Mdm2
title Structure of a Stapled Peptide Antagonist Bound to Nutlin-Resistant Mdm2
title_full Structure of a Stapled Peptide Antagonist Bound to Nutlin-Resistant Mdm2
title_fullStr Structure of a Stapled Peptide Antagonist Bound to Nutlin-Resistant Mdm2
title_full_unstemmed Structure of a Stapled Peptide Antagonist Bound to Nutlin-Resistant Mdm2
title_short Structure of a Stapled Peptide Antagonist Bound to Nutlin-Resistant Mdm2
title_sort structure of a stapled peptide antagonist bound to nutlin-resistant mdm2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4130638/
https://www.ncbi.nlm.nih.gov/pubmed/25115702
http://dx.doi.org/10.1371/journal.pone.0104914
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