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Topological dynamics of an intrinsically disordered N‐terminal domain of the human androgen receptor

Human androgen receptor contains a large N‐terminal domain (AR‐NTD) that is highly dynamic and this poses a major challenge for experimental and computational analysis to decipher its conformation. Misfolding of the AR‐NTD is implicated in prostate cancer and Kennedy's disease, yet our knowledg...

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Autores principales: Sheikhhassani, Vahid, Scalvini, Barbara, Ng, Julian, Heling, Laurens W. H. J., Ayache, Yosri, Evers, Tom M. J., Estébanez‐Perpiñá, Eva, McEwan, Iain J., Mashaghi, Alireza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9134807/
https://www.ncbi.nlm.nih.gov/pubmed/35634773
http://dx.doi.org/10.1002/pro.4334
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author Sheikhhassani, Vahid
Scalvini, Barbara
Ng, Julian
Heling, Laurens W. H. J.
Ayache, Yosri
Evers, Tom M. J.
Estébanez‐Perpiñá, Eva
McEwan, Iain J.
Mashaghi, Alireza
author_facet Sheikhhassani, Vahid
Scalvini, Barbara
Ng, Julian
Heling, Laurens W. H. J.
Ayache, Yosri
Evers, Tom M. J.
Estébanez‐Perpiñá, Eva
McEwan, Iain J.
Mashaghi, Alireza
author_sort Sheikhhassani, Vahid
collection PubMed
description Human androgen receptor contains a large N‐terminal domain (AR‐NTD) that is highly dynamic and this poses a major challenge for experimental and computational analysis to decipher its conformation. Misfolding of the AR‐NTD is implicated in prostate cancer and Kennedy's disease, yet our knowledge of its structure is limited to primary sequence information of the chain and a few functionally important secondary structure motifs. Here, we employed an innovative combination of molecular dynamics simulations and circuit topology (CT) analysis to identify the tertiary structure of AR‐NTD. We found that the AR‐NTD adopts highly dynamic loopy conformations with two identifiable regions with distinct topological make‐up and dynamics. This consists of a N‐terminal region (NR, residues 1–224) and a C‐terminal region (CR, residues 225–538), which carries a dense core. Topological mapping of the dynamics reveals a traceable time‐scale dependent topological evolution. NR adopts different positioning with respect to the CR and forms a cleft that can partly enclose the hormone‐bound ligand‐binding domain (LBD) of the androgen receptor. Furthermore, our data suggest a model in which dynamic NR and CR compete for binding to the DNA‐binding domain of the receptor, thereby regulating the accessibility of its DNA‐binding site. Our approach allowed for the identification of a previously unknown regulatory binding site within the CR core, revealing the structural mechanisms of action of AR inhibitor EPI‐001, and paving the way for other drug discovery applications.
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spelling pubmed-91348072022-06-04 Topological dynamics of an intrinsically disordered N‐terminal domain of the human androgen receptor Sheikhhassani, Vahid Scalvini, Barbara Ng, Julian Heling, Laurens W. H. J. Ayache, Yosri Evers, Tom M. J. Estébanez‐Perpiñá, Eva McEwan, Iain J. Mashaghi, Alireza Protein Sci Full‐length Papers Human androgen receptor contains a large N‐terminal domain (AR‐NTD) that is highly dynamic and this poses a major challenge for experimental and computational analysis to decipher its conformation. Misfolding of the AR‐NTD is implicated in prostate cancer and Kennedy's disease, yet our knowledge of its structure is limited to primary sequence information of the chain and a few functionally important secondary structure motifs. Here, we employed an innovative combination of molecular dynamics simulations and circuit topology (CT) analysis to identify the tertiary structure of AR‐NTD. We found that the AR‐NTD adopts highly dynamic loopy conformations with two identifiable regions with distinct topological make‐up and dynamics. This consists of a N‐terminal region (NR, residues 1–224) and a C‐terminal region (CR, residues 225–538), which carries a dense core. Topological mapping of the dynamics reveals a traceable time‐scale dependent topological evolution. NR adopts different positioning with respect to the CR and forms a cleft that can partly enclose the hormone‐bound ligand‐binding domain (LBD) of the androgen receptor. Furthermore, our data suggest a model in which dynamic NR and CR compete for binding to the DNA‐binding domain of the receptor, thereby regulating the accessibility of its DNA‐binding site. Our approach allowed for the identification of a previously unknown regulatory binding site within the CR core, revealing the structural mechanisms of action of AR inhibitor EPI‐001, and paving the way for other drug discovery applications. John Wiley & Sons, Inc. 2022-05-26 2022-06 /pmc/articles/PMC9134807/ /pubmed/35634773 http://dx.doi.org/10.1002/pro.4334 Text en © 2022 The Authors. Protein Science published by Wiley Periodicals LLC on behalf of The Protein Society. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full‐length Papers
Sheikhhassani, Vahid
Scalvini, Barbara
Ng, Julian
Heling, Laurens W. H. J.
Ayache, Yosri
Evers, Tom M. J.
Estébanez‐Perpiñá, Eva
McEwan, Iain J.
Mashaghi, Alireza
Topological dynamics of an intrinsically disordered N‐terminal domain of the human androgen receptor
title Topological dynamics of an intrinsically disordered N‐terminal domain of the human androgen receptor
title_full Topological dynamics of an intrinsically disordered N‐terminal domain of the human androgen receptor
title_fullStr Topological dynamics of an intrinsically disordered N‐terminal domain of the human androgen receptor
title_full_unstemmed Topological dynamics of an intrinsically disordered N‐terminal domain of the human androgen receptor
title_short Topological dynamics of an intrinsically disordered N‐terminal domain of the human androgen receptor
title_sort topological dynamics of an intrinsically disordered n‐terminal domain of the human androgen receptor
topic Full‐length Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9134807/
https://www.ncbi.nlm.nih.gov/pubmed/35634773
http://dx.doi.org/10.1002/pro.4334
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