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In Silico Molecular Studies of Antiophidic Properties of the Amazonian Tree Cordia nodosa Lam.

We carried out surveys on the use of Cordia nodosa Lam. in the jungles of Bobonaza (Ecuador). We documented this knowledge to prevent its loss under the Framework of the Convention on Biological Diversity and the Nagoya Protocol. We conducted bibliographic research and identified quercetrin as a sig...

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Autores principales: Luzuriaga-Quichimbo, Carmen X., Blanco-Salas, José, Muñoz-Centeno, Luz María, Peláez, Rafael, Cerón-Martínez, Carlos E., Ruiz-Téllez, Trinidad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6891429/
https://www.ncbi.nlm.nih.gov/pubmed/31744153
http://dx.doi.org/10.3390/molecules24224160
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author Luzuriaga-Quichimbo, Carmen X.
Blanco-Salas, José
Muñoz-Centeno, Luz María
Peláez, Rafael
Cerón-Martínez, Carlos E.
Ruiz-Téllez, Trinidad
author_facet Luzuriaga-Quichimbo, Carmen X.
Blanco-Salas, José
Muñoz-Centeno, Luz María
Peláez, Rafael
Cerón-Martínez, Carlos E.
Ruiz-Téllez, Trinidad
author_sort Luzuriaga-Quichimbo, Carmen X.
collection PubMed
description We carried out surveys on the use of Cordia nodosa Lam. in the jungles of Bobonaza (Ecuador). We documented this knowledge to prevent its loss under the Framework of the Convention on Biological Diversity and the Nagoya Protocol. We conducted bibliographic research and identified quercetrin as a significant bioactive molecule. We studied its in silico biological activity. The selected methodology was virtual docking experiments with the proteins responsible for the venomous action of snakes. The molecular structures of quercetrin and 21 selected toxins underwent corresponding tests with SwissDock and Chimera software. The results point to support its antiophidic use. They show reasonable geometries and a binding free energy of −7 to −10.03 kcal/mol. The most favorable values were obtained for the venom of the Asian snake Naja atra (5Z2G, −10.03 kcal/mol). Good results were also obtained from the venom of the Latin American Bothrops pirajai (3CYL, −9.71 kcal/mol) and that of Ecuadorian Bothrops asper snakes (5TFV, −9.47 kcal/mol) and Bothrops atrox (5TS5, −9.49 kcal/mol). In the 5Z2G and 5TS5 L-amino acid oxidases, quercetrin binds in a pocket adjacent to the FAD cofactor, while in the myotoxic homologues of PLA2, 3CYL and 5TFV, it joins in the hydrophobic channel formed when oligomerizing, in the first one similar to α-tocopherol. This study presents a case demonstration of the potential of bioinformatic tools in the validation process of ethnobotanical phytopharmaceuticals and how in silico methods are becoming increasingly useful for sustainable drug discovery.
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spelling pubmed-68914292019-12-18 In Silico Molecular Studies of Antiophidic Properties of the Amazonian Tree Cordia nodosa Lam. Luzuriaga-Quichimbo, Carmen X. Blanco-Salas, José Muñoz-Centeno, Luz María Peláez, Rafael Cerón-Martínez, Carlos E. Ruiz-Téllez, Trinidad Molecules Article We carried out surveys on the use of Cordia nodosa Lam. in the jungles of Bobonaza (Ecuador). We documented this knowledge to prevent its loss under the Framework of the Convention on Biological Diversity and the Nagoya Protocol. We conducted bibliographic research and identified quercetrin as a significant bioactive molecule. We studied its in silico biological activity. The selected methodology was virtual docking experiments with the proteins responsible for the venomous action of snakes. The molecular structures of quercetrin and 21 selected toxins underwent corresponding tests with SwissDock and Chimera software. The results point to support its antiophidic use. They show reasonable geometries and a binding free energy of −7 to −10.03 kcal/mol. The most favorable values were obtained for the venom of the Asian snake Naja atra (5Z2G, −10.03 kcal/mol). Good results were also obtained from the venom of the Latin American Bothrops pirajai (3CYL, −9.71 kcal/mol) and that of Ecuadorian Bothrops asper snakes (5TFV, −9.47 kcal/mol) and Bothrops atrox (5TS5, −9.49 kcal/mol). In the 5Z2G and 5TS5 L-amino acid oxidases, quercetrin binds in a pocket adjacent to the FAD cofactor, while in the myotoxic homologues of PLA2, 3CYL and 5TFV, it joins in the hydrophobic channel formed when oligomerizing, in the first one similar to α-tocopherol. This study presents a case demonstration of the potential of bioinformatic tools in the validation process of ethnobotanical phytopharmaceuticals and how in silico methods are becoming increasingly useful for sustainable drug discovery. MDPI 2019-11-16 /pmc/articles/PMC6891429/ /pubmed/31744153 http://dx.doi.org/10.3390/molecules24224160 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Luzuriaga-Quichimbo, Carmen X.
Blanco-Salas, José
Muñoz-Centeno, Luz María
Peláez, Rafael
Cerón-Martínez, Carlos E.
Ruiz-Téllez, Trinidad
In Silico Molecular Studies of Antiophidic Properties of the Amazonian Tree Cordia nodosa Lam.
title In Silico Molecular Studies of Antiophidic Properties of the Amazonian Tree Cordia nodosa Lam.
title_full In Silico Molecular Studies of Antiophidic Properties of the Amazonian Tree Cordia nodosa Lam.
title_fullStr In Silico Molecular Studies of Antiophidic Properties of the Amazonian Tree Cordia nodosa Lam.
title_full_unstemmed In Silico Molecular Studies of Antiophidic Properties of the Amazonian Tree Cordia nodosa Lam.
title_short In Silico Molecular Studies of Antiophidic Properties of the Amazonian Tree Cordia nodosa Lam.
title_sort in silico molecular studies of antiophidic properties of the amazonian tree cordia nodosa lam.
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6891429/
https://www.ncbi.nlm.nih.gov/pubmed/31744153
http://dx.doi.org/10.3390/molecules24224160
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