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Molecular Structure-Based Screening of the Constituents of Calotropis procera Identifies Potential Inhibitors of Diabetes Mellitus Target Alpha Glucosidase

Diabetes mellitus is a disorder characterized by higher levels of blood glucose due to impaired insulin mechanisms. Alpha glucosidase is a critical drug target implicated in the mechanisms of diabetes mellitus and its inhibition controls hyperglycemia. Since the existing standard synthetic drugs hav...

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Autores principales: Adinortey, Cynthia A., Kwarko, Gabriel B., Koranteng, Russell, Boison, Daniel, Obuaba, Issaka, Wilson, Michael D., Kwofie, Samuel K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8928985/
https://www.ncbi.nlm.nih.gov/pubmed/35723349
http://dx.doi.org/10.3390/cimb44020064
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author Adinortey, Cynthia A.
Kwarko, Gabriel B.
Koranteng, Russell
Boison, Daniel
Obuaba, Issaka
Wilson, Michael D.
Kwofie, Samuel K.
author_facet Adinortey, Cynthia A.
Kwarko, Gabriel B.
Koranteng, Russell
Boison, Daniel
Obuaba, Issaka
Wilson, Michael D.
Kwofie, Samuel K.
author_sort Adinortey, Cynthia A.
collection PubMed
description Diabetes mellitus is a disorder characterized by higher levels of blood glucose due to impaired insulin mechanisms. Alpha glucosidase is a critical drug target implicated in the mechanisms of diabetes mellitus and its inhibition controls hyperglycemia. Since the existing standard synthetic drugs have therapeutic limitations, it is imperative to identify new potent inhibitors of natural product origin which may slow carbohydrate digestion and absorption via alpha glucosidase. Since plant extracts from Calotropis procera have been extensively used in the treatment of diabetes mellitus, the present study used molecular docking and dynamics simulation techniques to screen its constituents against the receptor alpha glucosidase. Taraxasterol, syriogenin, isorhamnetin-3-O-robinobioside and calotoxin were identified as potential novel lead compounds with plausible binding energies of −40.2, −35.1, −34.3 and −34.3 kJ/mol against alpha glucosidase, respectively. The residues Trp(481), Asp(518), Leu(677), Leu(678) and Leu(680) were identified as critical for binding and the compounds were predicted as alpha glucosidase inhibitors. Structurally similar compounds with Tanimoto coefficients greater than 0.7 were reported experimentally to be inhibitors of alpha glucosidase or antidiabetic. The structures of the molecules may serve as templates for the design of novel inhibitors and warrant in vitro assaying to corroborate their antidiabetic potential.
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spelling pubmed-89289852022-06-04 Molecular Structure-Based Screening of the Constituents of Calotropis procera Identifies Potential Inhibitors of Diabetes Mellitus Target Alpha Glucosidase Adinortey, Cynthia A. Kwarko, Gabriel B. Koranteng, Russell Boison, Daniel Obuaba, Issaka Wilson, Michael D. Kwofie, Samuel K. Curr Issues Mol Biol Article Diabetes mellitus is a disorder characterized by higher levels of blood glucose due to impaired insulin mechanisms. Alpha glucosidase is a critical drug target implicated in the mechanisms of diabetes mellitus and its inhibition controls hyperglycemia. Since the existing standard synthetic drugs have therapeutic limitations, it is imperative to identify new potent inhibitors of natural product origin which may slow carbohydrate digestion and absorption via alpha glucosidase. Since plant extracts from Calotropis procera have been extensively used in the treatment of diabetes mellitus, the present study used molecular docking and dynamics simulation techniques to screen its constituents against the receptor alpha glucosidase. Taraxasterol, syriogenin, isorhamnetin-3-O-robinobioside and calotoxin were identified as potential novel lead compounds with plausible binding energies of −40.2, −35.1, −34.3 and −34.3 kJ/mol against alpha glucosidase, respectively. The residues Trp(481), Asp(518), Leu(677), Leu(678) and Leu(680) were identified as critical for binding and the compounds were predicted as alpha glucosidase inhibitors. Structurally similar compounds with Tanimoto coefficients greater than 0.7 were reported experimentally to be inhibitors of alpha glucosidase or antidiabetic. The structures of the molecules may serve as templates for the design of novel inhibitors and warrant in vitro assaying to corroborate their antidiabetic potential. MDPI 2022-02-21 /pmc/articles/PMC8928985/ /pubmed/35723349 http://dx.doi.org/10.3390/cimb44020064 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
Adinortey, Cynthia A.
Kwarko, Gabriel B.
Koranteng, Russell
Boison, Daniel
Obuaba, Issaka
Wilson, Michael D.
Kwofie, Samuel K.
Molecular Structure-Based Screening of the Constituents of Calotropis procera Identifies Potential Inhibitors of Diabetes Mellitus Target Alpha Glucosidase
title Molecular Structure-Based Screening of the Constituents of Calotropis procera Identifies Potential Inhibitors of Diabetes Mellitus Target Alpha Glucosidase
title_full Molecular Structure-Based Screening of the Constituents of Calotropis procera Identifies Potential Inhibitors of Diabetes Mellitus Target Alpha Glucosidase
title_fullStr Molecular Structure-Based Screening of the Constituents of Calotropis procera Identifies Potential Inhibitors of Diabetes Mellitus Target Alpha Glucosidase
title_full_unstemmed Molecular Structure-Based Screening of the Constituents of Calotropis procera Identifies Potential Inhibitors of Diabetes Mellitus Target Alpha Glucosidase
title_short Molecular Structure-Based Screening of the Constituents of Calotropis procera Identifies Potential Inhibitors of Diabetes Mellitus Target Alpha Glucosidase
title_sort molecular structure-based screening of the constituents of calotropis procera identifies potential inhibitors of diabetes mellitus target alpha glucosidase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8928985/
https://www.ncbi.nlm.nih.gov/pubmed/35723349
http://dx.doi.org/10.3390/cimb44020064
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