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Structural basis of GC-1 selectivity for thyroid hormone receptor isoforms

BACKGROUND: Thyroid receptors, TRα and TRβ, are involved in important physiological functions such as metabolism, cholesterol level and heart activities. Whereas metabolism increase and cholesterol level lowering could be achieved by TRβ isoform activation, TRα activation affects heart rates. Theref...

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Autores principales: Bleicher, Lucas, Aparicio, Ricardo, Nunes, Fabio M, Martinez, Leandro, Gomes Dias, Sandra M, Figueira, Ana Carolina Migliorini, Santos, Maria Auxiliadora Morim, Venturelli, Walter H, da Silva, Rosangela, Donate, Paulo Marcos, Neves, Francisco AR, Simeoni, Luiz A, Baxter, John D, Webb, Paul, Skaf, Munir S, Polikarpov, Igor
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2275733/
https://www.ncbi.nlm.nih.gov/pubmed/18237438
http://dx.doi.org/10.1186/1472-6807-8-8
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author Bleicher, Lucas
Aparicio, Ricardo
Nunes, Fabio M
Martinez, Leandro
Gomes Dias, Sandra M
Figueira, Ana Carolina Migliorini
Santos, Maria Auxiliadora Morim
Venturelli, Walter H
da Silva, Rosangela
Donate, Paulo Marcos
Neves, Francisco AR
Simeoni, Luiz A
Baxter, John D
Webb, Paul
Skaf, Munir S
Polikarpov, Igor
author_facet Bleicher, Lucas
Aparicio, Ricardo
Nunes, Fabio M
Martinez, Leandro
Gomes Dias, Sandra M
Figueira, Ana Carolina Migliorini
Santos, Maria Auxiliadora Morim
Venturelli, Walter H
da Silva, Rosangela
Donate, Paulo Marcos
Neves, Francisco AR
Simeoni, Luiz A
Baxter, John D
Webb, Paul
Skaf, Munir S
Polikarpov, Igor
author_sort Bleicher, Lucas
collection PubMed
description BACKGROUND: Thyroid receptors, TRα and TRβ, are involved in important physiological functions such as metabolism, cholesterol level and heart activities. Whereas metabolism increase and cholesterol level lowering could be achieved by TRβ isoform activation, TRα activation affects heart rates. Therefore, β-selective thyromimetics have been developed as promising drug-candidates for treatment of obesity and elevated cholesterol level. GC-1 [3,5-dimethyl-4-(4'-hydroxy-3'-isopropylbenzyl)-phenoxy acetic acid] has ability to lower LDL cholesterol with 600- to 1400-fold more potency and approximately two- to threefold more efficacy than atorvastatin (Lipitor(©)) in studies in rats, mice and monkeys. RESULTS: To investigate GC-1 specificity, we solved crystal structures and performed molecular dynamics simulations of both isoforms complexed with GC-1. Crystal structures reveal that, in TRα Arg228 is observed in multiple conformations, an effect triggered by the differences in the interactions between GC-1 and Ser277 or the corresponding asparagine (Asn331) of TRβ. The corresponding Arg282 of TRβ is observed in only one single stable conformation, interacting effectively with the ligand. Molecular dynamics support this model: our simulations show that the multiple conformations can be observed for the Arg228 in TRα, in which the ligand interacts either strongly with the ligand or with the Ser277 residue. In contrast, a single stable Arg282 conformation is observed for TRβ, in which it strongly interacts with both GC-1 and the Asn331. CONCLUSION: Our analysis suggests that the key factors for GC-1 selectivity are the presence of an oxyacetic acid ester oxygen and the absence of the amino group relative to T(3). These results shed light into the β-selectivity of GC-1 and may assist the development of new compounds with potential as drug candidates to the treatment of hypercholesterolemia and obesity.
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spelling pubmed-22757332008-03-27 Structural basis of GC-1 selectivity for thyroid hormone receptor isoforms Bleicher, Lucas Aparicio, Ricardo Nunes, Fabio M Martinez, Leandro Gomes Dias, Sandra M Figueira, Ana Carolina Migliorini Santos, Maria Auxiliadora Morim Venturelli, Walter H da Silva, Rosangela Donate, Paulo Marcos Neves, Francisco AR Simeoni, Luiz A Baxter, John D Webb, Paul Skaf, Munir S Polikarpov, Igor BMC Struct Biol Research Article BACKGROUND: Thyroid receptors, TRα and TRβ, are involved in important physiological functions such as metabolism, cholesterol level and heart activities. Whereas metabolism increase and cholesterol level lowering could be achieved by TRβ isoform activation, TRα activation affects heart rates. Therefore, β-selective thyromimetics have been developed as promising drug-candidates for treatment of obesity and elevated cholesterol level. GC-1 [3,5-dimethyl-4-(4'-hydroxy-3'-isopropylbenzyl)-phenoxy acetic acid] has ability to lower LDL cholesterol with 600- to 1400-fold more potency and approximately two- to threefold more efficacy than atorvastatin (Lipitor(©)) in studies in rats, mice and monkeys. RESULTS: To investigate GC-1 specificity, we solved crystal structures and performed molecular dynamics simulations of both isoforms complexed with GC-1. Crystal structures reveal that, in TRα Arg228 is observed in multiple conformations, an effect triggered by the differences in the interactions between GC-1 and Ser277 or the corresponding asparagine (Asn331) of TRβ. The corresponding Arg282 of TRβ is observed in only one single stable conformation, interacting effectively with the ligand. Molecular dynamics support this model: our simulations show that the multiple conformations can be observed for the Arg228 in TRα, in which the ligand interacts either strongly with the ligand or with the Ser277 residue. In contrast, a single stable Arg282 conformation is observed for TRβ, in which it strongly interacts with both GC-1 and the Asn331. CONCLUSION: Our analysis suggests that the key factors for GC-1 selectivity are the presence of an oxyacetic acid ester oxygen and the absence of the amino group relative to T(3). These results shed light into the β-selectivity of GC-1 and may assist the development of new compounds with potential as drug candidates to the treatment of hypercholesterolemia and obesity. BioMed Central 2008-01-31 /pmc/articles/PMC2275733/ /pubmed/18237438 http://dx.doi.org/10.1186/1472-6807-8-8 Text en Copyright © 2008 Bleicher et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Bleicher, Lucas
Aparicio, Ricardo
Nunes, Fabio M
Martinez, Leandro
Gomes Dias, Sandra M
Figueira, Ana Carolina Migliorini
Santos, Maria Auxiliadora Morim
Venturelli, Walter H
da Silva, Rosangela
Donate, Paulo Marcos
Neves, Francisco AR
Simeoni, Luiz A
Baxter, John D
Webb, Paul
Skaf, Munir S
Polikarpov, Igor
Structural basis of GC-1 selectivity for thyroid hormone receptor isoforms
title Structural basis of GC-1 selectivity for thyroid hormone receptor isoforms
title_full Structural basis of GC-1 selectivity for thyroid hormone receptor isoforms
title_fullStr Structural basis of GC-1 selectivity for thyroid hormone receptor isoforms
title_full_unstemmed Structural basis of GC-1 selectivity for thyroid hormone receptor isoforms
title_short Structural basis of GC-1 selectivity for thyroid hormone receptor isoforms
title_sort structural basis of gc-1 selectivity for thyroid hormone receptor isoforms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2275733/
https://www.ncbi.nlm.nih.gov/pubmed/18237438
http://dx.doi.org/10.1186/1472-6807-8-8
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