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Structural Studies Provide New Insights into the Role of Lysine Acetylation on Substrate Recognition by CARM1 and Inform the Design of Potent Peptidomimetic Inhibitors

The dynamic interplay of post‐translational modifications (PTMs) in chromatin provides a communication system for the regulation of gene expression. An increasing number of studies have highlighted the role that such crosstalk between PTMs plays in chromatin recognition. In this study, (bio)chemical...

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Autores principales: Zhang, Yurui, Marechal, Nils, van Haren, Matthijs J., Troffer‐Charlier, Nathalie, Cura, Vincent, Cavarelli, Jean, Martin, Nathaniel I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9293414/
https://www.ncbi.nlm.nih.gov/pubmed/34569136
http://dx.doi.org/10.1002/cbic.202100506
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author Zhang, Yurui
Marechal, Nils
van Haren, Matthijs J.
Troffer‐Charlier, Nathalie
Cura, Vincent
Cavarelli, Jean
Martin, Nathaniel I.
author_facet Zhang, Yurui
Marechal, Nils
van Haren, Matthijs J.
Troffer‐Charlier, Nathalie
Cura, Vincent
Cavarelli, Jean
Martin, Nathaniel I.
author_sort Zhang, Yurui
collection PubMed
description The dynamic interplay of post‐translational modifications (PTMs) in chromatin provides a communication system for the regulation of gene expression. An increasing number of studies have highlighted the role that such crosstalk between PTMs plays in chromatin recognition. In this study, (bio)chemical and structural approaches were applied to specifically probe the impact of acetylation of Lys(18) in the histone H3 tail peptide on peptide recognition by the protein methyltransferase coactivator‐associated arginine methyltransferase 1 (CARM1). Peptidomimetics that recapitulate the transition state of protein arginine N‐methyltransferases, were designed based on the H3 peptide wherein the target Arg(17) was flanked by either a free or an acetylated lysine. Structural studies with these peptidomimetics and the catalytic domain of CARM1 provide new insights into the binding of the H3 peptide within the enzyme active site. While the co‐crystal structures reveal that lysine acetylation results in minor conformational differences for both CARM1 and the H3 peptide, acetylation of Lys(18) does lead to additional interactions (Van der Waals and hydrogen bonding) and likely reduces the cost of desolvation upon binding, resulting in increased affinity. Informed by these findings a series of smaller peptidomimetics were also prepared and found to maintain potent and selective CARM1 inhibition. These findings provide new insights both into the mechanism of crosstalk between arginine methylation and lysine acetylation as well as towards the development of peptidomimetic CARM1 inhibitors.
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spelling pubmed-92934142022-07-20 Structural Studies Provide New Insights into the Role of Lysine Acetylation on Substrate Recognition by CARM1 and Inform the Design of Potent Peptidomimetic Inhibitors Zhang, Yurui Marechal, Nils van Haren, Matthijs J. Troffer‐Charlier, Nathalie Cura, Vincent Cavarelli, Jean Martin, Nathaniel I. Chembiochem Full Papers The dynamic interplay of post‐translational modifications (PTMs) in chromatin provides a communication system for the regulation of gene expression. An increasing number of studies have highlighted the role that such crosstalk between PTMs plays in chromatin recognition. In this study, (bio)chemical and structural approaches were applied to specifically probe the impact of acetylation of Lys(18) in the histone H3 tail peptide on peptide recognition by the protein methyltransferase coactivator‐associated arginine methyltransferase 1 (CARM1). Peptidomimetics that recapitulate the transition state of protein arginine N‐methyltransferases, were designed based on the H3 peptide wherein the target Arg(17) was flanked by either a free or an acetylated lysine. Structural studies with these peptidomimetics and the catalytic domain of CARM1 provide new insights into the binding of the H3 peptide within the enzyme active site. While the co‐crystal structures reveal that lysine acetylation results in minor conformational differences for both CARM1 and the H3 peptide, acetylation of Lys(18) does lead to additional interactions (Van der Waals and hydrogen bonding) and likely reduces the cost of desolvation upon binding, resulting in increased affinity. Informed by these findings a series of smaller peptidomimetics were also prepared and found to maintain potent and selective CARM1 inhibition. These findings provide new insights both into the mechanism of crosstalk between arginine methylation and lysine acetylation as well as towards the development of peptidomimetic CARM1 inhibitors. John Wiley and Sons Inc. 2021-10-14 2021-12-10 /pmc/articles/PMC9293414/ /pubmed/34569136 http://dx.doi.org/10.1002/cbic.202100506 Text en © 2021 The Authors. ChemBioChem published by Wiley-VCH GmbH https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Full Papers
Zhang, Yurui
Marechal, Nils
van Haren, Matthijs J.
Troffer‐Charlier, Nathalie
Cura, Vincent
Cavarelli, Jean
Martin, Nathaniel I.
Structural Studies Provide New Insights into the Role of Lysine Acetylation on Substrate Recognition by CARM1 and Inform the Design of Potent Peptidomimetic Inhibitors
title Structural Studies Provide New Insights into the Role of Lysine Acetylation on Substrate Recognition by CARM1 and Inform the Design of Potent Peptidomimetic Inhibitors
title_full Structural Studies Provide New Insights into the Role of Lysine Acetylation on Substrate Recognition by CARM1 and Inform the Design of Potent Peptidomimetic Inhibitors
title_fullStr Structural Studies Provide New Insights into the Role of Lysine Acetylation on Substrate Recognition by CARM1 and Inform the Design of Potent Peptidomimetic Inhibitors
title_full_unstemmed Structural Studies Provide New Insights into the Role of Lysine Acetylation on Substrate Recognition by CARM1 and Inform the Design of Potent Peptidomimetic Inhibitors
title_short Structural Studies Provide New Insights into the Role of Lysine Acetylation on Substrate Recognition by CARM1 and Inform the Design of Potent Peptidomimetic Inhibitors
title_sort structural studies provide new insights into the role of lysine acetylation on substrate recognition by carm1 and inform the design of potent peptidomimetic inhibitors
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9293414/
https://www.ncbi.nlm.nih.gov/pubmed/34569136
http://dx.doi.org/10.1002/cbic.202100506
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