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Computational Simulations Highlight the IL2Rα Binding Potential of Polyphenol Stilbenes from Fenugreek

Widely used in global households, fenugreek is well known for its culinary and medicinal uses. The various reported medicinal properties of fenugreek are by virtue of the different natural phytochemicals present in it. Regarded as a promising target, interleukin 2 receptor subunit alpha (IL2Rα) has...

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Autores principales: Kulkarni, Apoorva M., Parate, Shraddha, Lee, Gihwan, Kim, Yongseong, Jung, Tae Sung, Lee, Keun Woo, Ha, Min Woo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8880457/
https://www.ncbi.nlm.nih.gov/pubmed/35209009
http://dx.doi.org/10.3390/molecules27041215
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author Kulkarni, Apoorva M.
Parate, Shraddha
Lee, Gihwan
Kim, Yongseong
Jung, Tae Sung
Lee, Keun Woo
Ha, Min Woo
author_facet Kulkarni, Apoorva M.
Parate, Shraddha
Lee, Gihwan
Kim, Yongseong
Jung, Tae Sung
Lee, Keun Woo
Ha, Min Woo
author_sort Kulkarni, Apoorva M.
collection PubMed
description Widely used in global households, fenugreek is well known for its culinary and medicinal uses. The various reported medicinal properties of fenugreek are by virtue of the different natural phytochemicals present in it. Regarded as a promising target, interleukin 2 receptor subunit alpha (IL2Rα) has been shown to influence immune responses. In the present research, using in silico techniques, we have demonstrated the potential IL2Rα binding properties of three polyphenol stilbenes (desoxyrhaponticin, rhaponticin, rhapontigenin) from fenugreek. As the first step, molecular docking was performed to assess the binding potential of the fenugreek phytochemicals with IL2Rα. All three phytochemicals demonstrated interactions with active site residues. To confirm the reliability of our molecular docking results, 100 ns molecular dynamics simulations studies were undertaken. As discerned by the RMSD and RMSF analyses, IL2Rα in complex with the desoxyrhaponticin, rhaponticin, and rhapontigenin indicated stability. The RMSD analysis of the phytochemicals alone also demonstrated no significant structural changes. Based on the stable molecular interactions and comparatively slightly better MM/PBSA binding free energy, rhaponticin seems promising. Additionally, ADMET analysis performed for the stilbenes indicated that all of them obey the ADMET rules. Our computational study thus supports further in vitro IL2Rα binding studies on these stilbenes, especially rhaponticin.
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spelling pubmed-88804572022-02-26 Computational Simulations Highlight the IL2Rα Binding Potential of Polyphenol Stilbenes from Fenugreek Kulkarni, Apoorva M. Parate, Shraddha Lee, Gihwan Kim, Yongseong Jung, Tae Sung Lee, Keun Woo Ha, Min Woo Molecules Article Widely used in global households, fenugreek is well known for its culinary and medicinal uses. The various reported medicinal properties of fenugreek are by virtue of the different natural phytochemicals present in it. Regarded as a promising target, interleukin 2 receptor subunit alpha (IL2Rα) has been shown to influence immune responses. In the present research, using in silico techniques, we have demonstrated the potential IL2Rα binding properties of three polyphenol stilbenes (desoxyrhaponticin, rhaponticin, rhapontigenin) from fenugreek. As the first step, molecular docking was performed to assess the binding potential of the fenugreek phytochemicals with IL2Rα. All three phytochemicals demonstrated interactions with active site residues. To confirm the reliability of our molecular docking results, 100 ns molecular dynamics simulations studies were undertaken. As discerned by the RMSD and RMSF analyses, IL2Rα in complex with the desoxyrhaponticin, rhaponticin, and rhapontigenin indicated stability. The RMSD analysis of the phytochemicals alone also demonstrated no significant structural changes. Based on the stable molecular interactions and comparatively slightly better MM/PBSA binding free energy, rhaponticin seems promising. Additionally, ADMET analysis performed for the stilbenes indicated that all of them obey the ADMET rules. Our computational study thus supports further in vitro IL2Rα binding studies on these stilbenes, especially rhaponticin. MDPI 2022-02-11 /pmc/articles/PMC8880457/ /pubmed/35209009 http://dx.doi.org/10.3390/molecules27041215 Text en © 2022 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
Kulkarni, Apoorva M.
Parate, Shraddha
Lee, Gihwan
Kim, Yongseong
Jung, Tae Sung
Lee, Keun Woo
Ha, Min Woo
Computational Simulations Highlight the IL2Rα Binding Potential of Polyphenol Stilbenes from Fenugreek
title Computational Simulations Highlight the IL2Rα Binding Potential of Polyphenol Stilbenes from Fenugreek
title_full Computational Simulations Highlight the IL2Rα Binding Potential of Polyphenol Stilbenes from Fenugreek
title_fullStr Computational Simulations Highlight the IL2Rα Binding Potential of Polyphenol Stilbenes from Fenugreek
title_full_unstemmed Computational Simulations Highlight the IL2Rα Binding Potential of Polyphenol Stilbenes from Fenugreek
title_short Computational Simulations Highlight the IL2Rα Binding Potential of Polyphenol Stilbenes from Fenugreek
title_sort computational simulations highlight the il2rα binding potential of polyphenol stilbenes from fenugreek
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8880457/
https://www.ncbi.nlm.nih.gov/pubmed/35209009
http://dx.doi.org/10.3390/molecules27041215
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