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Determinants of Activity at Human Toll-like Receptors 7 and 8: Quantitative Structure–Activity Relationship (QSAR) of Diverse Heterocyclic Scaffolds

[Image: see text] Toll-like receptor (TLR) 7 and 8 agonists are potential vaccine adjuvants, since they directly activate APCs and enhance Th1-driven immune responses. Previous SAR investigations in several scaffolds of small molecule TLR7/8 activators pointed to the strict dependence of the selecti...

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Autores principales: Yoo, Euna, Salunke, Deepak B., Sil, Diptesh, Guo, Xiaoqiang, Salyer, Alex C. D., Hermanson, Alec R., Kumar, Manoj, Malladi, Subbalakshmi S., Balakrishna, Rajalakshmi, Thompson, Ward H., Tanji, Hiromi, Ohto, Umeharu, Shimizu, Toshiyuki, David, Sunil A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4191598/
https://www.ncbi.nlm.nih.gov/pubmed/25192394
http://dx.doi.org/10.1021/jm500744f
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author Yoo, Euna
Salunke, Deepak B.
Sil, Diptesh
Guo, Xiaoqiang
Salyer, Alex C. D.
Hermanson, Alec R.
Kumar, Manoj
Malladi, Subbalakshmi S.
Balakrishna, Rajalakshmi
Thompson, Ward H.
Tanji, Hiromi
Ohto, Umeharu
Shimizu, Toshiyuki
David, Sunil A.
author_facet Yoo, Euna
Salunke, Deepak B.
Sil, Diptesh
Guo, Xiaoqiang
Salyer, Alex C. D.
Hermanson, Alec R.
Kumar, Manoj
Malladi, Subbalakshmi S.
Balakrishna, Rajalakshmi
Thompson, Ward H.
Tanji, Hiromi
Ohto, Umeharu
Shimizu, Toshiyuki
David, Sunil A.
author_sort Yoo, Euna
collection PubMed
description [Image: see text] Toll-like receptor (TLR) 7 and 8 agonists are potential vaccine adjuvants, since they directly activate APCs and enhance Th1-driven immune responses. Previous SAR investigations in several scaffolds of small molecule TLR7/8 activators pointed to the strict dependence of the selectivity for TLR7 vis-à-vis TLR8 on the electronic configurations of the heterocyclic systems, which we sought to examine quantitatively with the goal of developing “heuristics” to define structural requisites governing activity at TLR7 and/or TLR8. We undertook a scaffold-hopping approach, entailing the syntheses and biological evaluations of 13 different chemotypes. Crystal structures of TLR8 in complex with the two most active compounds confirmed important binding interactions playing a key role in ligand occupancy and biological activity. Density functional theory based quantum chemical calculations on these compounds followed by linear discriminant analyses permitted the classification of inactive, TLR8-active, and TLR7/8 dual-active compounds, confirming the critical role of partial charges in determining biological activity.
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spelling pubmed-41915982015-09-05 Determinants of Activity at Human Toll-like Receptors 7 and 8: Quantitative Structure–Activity Relationship (QSAR) of Diverse Heterocyclic Scaffolds Yoo, Euna Salunke, Deepak B. Sil, Diptesh Guo, Xiaoqiang Salyer, Alex C. D. Hermanson, Alec R. Kumar, Manoj Malladi, Subbalakshmi S. Balakrishna, Rajalakshmi Thompson, Ward H. Tanji, Hiromi Ohto, Umeharu Shimizu, Toshiyuki David, Sunil A. J Med Chem [Image: see text] Toll-like receptor (TLR) 7 and 8 agonists are potential vaccine adjuvants, since they directly activate APCs and enhance Th1-driven immune responses. Previous SAR investigations in several scaffolds of small molecule TLR7/8 activators pointed to the strict dependence of the selectivity for TLR7 vis-à-vis TLR8 on the electronic configurations of the heterocyclic systems, which we sought to examine quantitatively with the goal of developing “heuristics” to define structural requisites governing activity at TLR7 and/or TLR8. We undertook a scaffold-hopping approach, entailing the syntheses and biological evaluations of 13 different chemotypes. Crystal structures of TLR8 in complex with the two most active compounds confirmed important binding interactions playing a key role in ligand occupancy and biological activity. Density functional theory based quantum chemical calculations on these compounds followed by linear discriminant analyses permitted the classification of inactive, TLR8-active, and TLR7/8 dual-active compounds, confirming the critical role of partial charges in determining biological activity. American Chemical Society 2014-09-05 2014-10-09 /pmc/articles/PMC4191598/ /pubmed/25192394 http://dx.doi.org/10.1021/jm500744f Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Yoo, Euna
Salunke, Deepak B.
Sil, Diptesh
Guo, Xiaoqiang
Salyer, Alex C. D.
Hermanson, Alec R.
Kumar, Manoj
Malladi, Subbalakshmi S.
Balakrishna, Rajalakshmi
Thompson, Ward H.
Tanji, Hiromi
Ohto, Umeharu
Shimizu, Toshiyuki
David, Sunil A.
Determinants of Activity at Human Toll-like Receptors 7 and 8: Quantitative Structure–Activity Relationship (QSAR) of Diverse Heterocyclic Scaffolds
title Determinants of Activity at Human Toll-like Receptors 7 and 8: Quantitative Structure–Activity Relationship (QSAR) of Diverse Heterocyclic Scaffolds
title_full Determinants of Activity at Human Toll-like Receptors 7 and 8: Quantitative Structure–Activity Relationship (QSAR) of Diverse Heterocyclic Scaffolds
title_fullStr Determinants of Activity at Human Toll-like Receptors 7 and 8: Quantitative Structure–Activity Relationship (QSAR) of Diverse Heterocyclic Scaffolds
title_full_unstemmed Determinants of Activity at Human Toll-like Receptors 7 and 8: Quantitative Structure–Activity Relationship (QSAR) of Diverse Heterocyclic Scaffolds
title_short Determinants of Activity at Human Toll-like Receptors 7 and 8: Quantitative Structure–Activity Relationship (QSAR) of Diverse Heterocyclic Scaffolds
title_sort determinants of activity at human toll-like receptors 7 and 8: quantitative structure–activity relationship (qsar) of diverse heterocyclic scaffolds
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4191598/
https://www.ncbi.nlm.nih.gov/pubmed/25192394
http://dx.doi.org/10.1021/jm500744f
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