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Coordination of Di-Acetylated Histone Ligands by the ATAD2 Bromodomain

The ATPase Family, AAA domain-containing protein 2 (ATAD2) bromodomain (BRD) has a canonical bromodomain structure consisting of four α-helices. ATAD2 functions as a co-activator of the androgen and estrogen receptors as well as the MYC and E2F transcription factors. ATAD2 also functions during DNA...

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Autores principales: Evans, Chiara M., Phillips, Margaret, Malone, Kiera L., Tonelli, Marco, Cornilescu, Gabriel, Cornilescu, Claudia, Holton, Simon J., Gorjánácz, Mátyás, Wang, Liping, Carlson, Samuel, Gay, Jamie C., Nix, Jay C., Demeler, Borries, Markley, John L., Glass, Karen C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8430952/
https://www.ncbi.nlm.nih.gov/pubmed/34502039
http://dx.doi.org/10.3390/ijms22179128
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author Evans, Chiara M.
Phillips, Margaret
Malone, Kiera L.
Tonelli, Marco
Cornilescu, Gabriel
Cornilescu, Claudia
Holton, Simon J.
Gorjánácz, Mátyás
Wang, Liping
Carlson, Samuel
Gay, Jamie C.
Nix, Jay C.
Demeler, Borries
Markley, John L.
Glass, Karen C.
author_facet Evans, Chiara M.
Phillips, Margaret
Malone, Kiera L.
Tonelli, Marco
Cornilescu, Gabriel
Cornilescu, Claudia
Holton, Simon J.
Gorjánácz, Mátyás
Wang, Liping
Carlson, Samuel
Gay, Jamie C.
Nix, Jay C.
Demeler, Borries
Markley, John L.
Glass, Karen C.
author_sort Evans, Chiara M.
collection PubMed
description The ATPase Family, AAA domain-containing protein 2 (ATAD2) bromodomain (BRD) has a canonical bromodomain structure consisting of four α-helices. ATAD2 functions as a co-activator of the androgen and estrogen receptors as well as the MYC and E2F transcription factors. ATAD2 also functions during DNA replication, recognizing newly synthesized histones. In addition, ATAD2 is shown to be up-regulated in multiple forms of cancer including breast, lung, gastric, endometrial, renal, and prostate. Furthermore, up-regulation of ATAD2 is strongly correlated with poor prognosis in many types of cancer, making the ATAD2 bromodomain an innovative target for cancer therapeutics. In this study, we describe the recognition of histone acetyllysine modifications by the ATAD2 bromodomain. Residue-specific information on the complex formed between the histone tail and the ATAD2 bromodomain, obtained through nuclear magnetic resonance spectroscopy (NMR) and X-ray crystallography, illustrates key residues lining the binding pocket, which are involved in coordination of di-acetylated histone tails. Analytical ultracentrifugation, NMR relaxation data, and isothermal titration calorimetry further confirm the monomeric state of the functionally active ATAD2 bromodomain in complex with di-acetylated histone ligands. Overall, we describe histone tail recognition by ATAD2 BRD and illustrate that one acetyllysine group is primarily engaged by the conserved asparagine (N1064), the “RVF” shelf residues, and the flexible ZA loop. Coordination of a second acetyllysine group also occurs within the same binding pocket but is essentially governed by unique hydrophobic and electrostatic interactions making the di-acetyllysine histone coordination more specific than previously presumed.
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spelling pubmed-84309522021-09-11 Coordination of Di-Acetylated Histone Ligands by the ATAD2 Bromodomain Evans, Chiara M. Phillips, Margaret Malone, Kiera L. Tonelli, Marco Cornilescu, Gabriel Cornilescu, Claudia Holton, Simon J. Gorjánácz, Mátyás Wang, Liping Carlson, Samuel Gay, Jamie C. Nix, Jay C. Demeler, Borries Markley, John L. Glass, Karen C. Int J Mol Sci Article The ATPase Family, AAA domain-containing protein 2 (ATAD2) bromodomain (BRD) has a canonical bromodomain structure consisting of four α-helices. ATAD2 functions as a co-activator of the androgen and estrogen receptors as well as the MYC and E2F transcription factors. ATAD2 also functions during DNA replication, recognizing newly synthesized histones. In addition, ATAD2 is shown to be up-regulated in multiple forms of cancer including breast, lung, gastric, endometrial, renal, and prostate. Furthermore, up-regulation of ATAD2 is strongly correlated with poor prognosis in many types of cancer, making the ATAD2 bromodomain an innovative target for cancer therapeutics. In this study, we describe the recognition of histone acetyllysine modifications by the ATAD2 bromodomain. Residue-specific information on the complex formed between the histone tail and the ATAD2 bromodomain, obtained through nuclear magnetic resonance spectroscopy (NMR) and X-ray crystallography, illustrates key residues lining the binding pocket, which are involved in coordination of di-acetylated histone tails. Analytical ultracentrifugation, NMR relaxation data, and isothermal titration calorimetry further confirm the monomeric state of the functionally active ATAD2 bromodomain in complex with di-acetylated histone ligands. Overall, we describe histone tail recognition by ATAD2 BRD and illustrate that one acetyllysine group is primarily engaged by the conserved asparagine (N1064), the “RVF” shelf residues, and the flexible ZA loop. Coordination of a second acetyllysine group also occurs within the same binding pocket but is essentially governed by unique hydrophobic and electrostatic interactions making the di-acetyllysine histone coordination more specific than previously presumed. MDPI 2021-08-24 /pmc/articles/PMC8430952/ /pubmed/34502039 http://dx.doi.org/10.3390/ijms22179128 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
Evans, Chiara M.
Phillips, Margaret
Malone, Kiera L.
Tonelli, Marco
Cornilescu, Gabriel
Cornilescu, Claudia
Holton, Simon J.
Gorjánácz, Mátyás
Wang, Liping
Carlson, Samuel
Gay, Jamie C.
Nix, Jay C.
Demeler, Borries
Markley, John L.
Glass, Karen C.
Coordination of Di-Acetylated Histone Ligands by the ATAD2 Bromodomain
title Coordination of Di-Acetylated Histone Ligands by the ATAD2 Bromodomain
title_full Coordination of Di-Acetylated Histone Ligands by the ATAD2 Bromodomain
title_fullStr Coordination of Di-Acetylated Histone Ligands by the ATAD2 Bromodomain
title_full_unstemmed Coordination of Di-Acetylated Histone Ligands by the ATAD2 Bromodomain
title_short Coordination of Di-Acetylated Histone Ligands by the ATAD2 Bromodomain
title_sort coordination of di-acetylated histone ligands by the atad2 bromodomain
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8430952/
https://www.ncbi.nlm.nih.gov/pubmed/34502039
http://dx.doi.org/10.3390/ijms22179128
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