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Mechanistic Insight into the Binding of Huperzine a with Human Transferrin: Computational, Spectroscopic and Calorimetric Approaches

[Image: see text] Huperzine A (HupA), an alkaloid found in the club moss Huperzia Serrata, has been in use for centuries in Chinese traditional medicine to treat dementia owing to its ability to inhibit the cholinergic enzyme acetylcholinesterase (AChE), thus acting as an acetylcholinesterase inhibi...

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Autores principales: Atiya, Akhtar, Alhumaydhi, Fahad A., Shamsi, Anas, Olatunde, Ahmed, Alsagaby, Suliman A., Al Abdulmonem, Waleed, Sharaf, Sharaf E., Shahwan, Moyad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9631745/
https://www.ncbi.nlm.nih.gov/pubmed/36340147
http://dx.doi.org/10.1021/acsomega.2c03185
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author Atiya, Akhtar
Alhumaydhi, Fahad A.
Shamsi, Anas
Olatunde, Ahmed
Alsagaby, Suliman A.
Al Abdulmonem, Waleed
Sharaf, Sharaf E.
Shahwan, Moyad
author_facet Atiya, Akhtar
Alhumaydhi, Fahad A.
Shamsi, Anas
Olatunde, Ahmed
Alsagaby, Suliman A.
Al Abdulmonem, Waleed
Sharaf, Sharaf E.
Shahwan, Moyad
author_sort Atiya, Akhtar
collection PubMed
description [Image: see text] Huperzine A (HupA), an alkaloid found in the club moss Huperzia Serrata, has been in use for centuries in Chinese traditional medicine to treat dementia owing to its ability to inhibit the cholinergic enzyme acetylcholinesterase (AChE), thus acting as an acetylcholinesterase inhibitor (AChEI). An imbalance of metal ions in the brain is linked to Alzheimer’s disease (AD) pathology. Transferrin (Tf) is a crucial player in iron homeostasis, thus highlighting its significance in AD. This study explores the plausible binding of HupA with Tf using molecular docking, molecular dynamics (MD) simulation, and free energy landscape (FEL) analyses. The docking results show that HupA binds to the functionally active region of Tf by forming three hydrogen bonds with Thr392, Glu394, and Ser688 and several hydrophobic interactions. The MD simulation analyses show that HupA binding is stable with Tf, causing minimal changes to the protein conformation. Moreover, principal component analysis (PCA) and FEL also depict the stable binding of HupA with Tf without any significant fluctuations. Further, fluorescence-based binding suggested excellent binding affinity of HupA with Tf affirming in silico observations. Isothermal titration calorimetry (ITC) advocated the spontaneous binding of HupA with Tf. This study provides an insight into the binding mechanism of HupA with Tf, and overall, the results show that HupA, after required experimentations, can be a better therapeutic agent for treating AD while targeting Tf.
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spelling pubmed-96317452022-11-04 Mechanistic Insight into the Binding of Huperzine a with Human Transferrin: Computational, Spectroscopic and Calorimetric Approaches Atiya, Akhtar Alhumaydhi, Fahad A. Shamsi, Anas Olatunde, Ahmed Alsagaby, Suliman A. Al Abdulmonem, Waleed Sharaf, Sharaf E. Shahwan, Moyad ACS Omega [Image: see text] Huperzine A (HupA), an alkaloid found in the club moss Huperzia Serrata, has been in use for centuries in Chinese traditional medicine to treat dementia owing to its ability to inhibit the cholinergic enzyme acetylcholinesterase (AChE), thus acting as an acetylcholinesterase inhibitor (AChEI). An imbalance of metal ions in the brain is linked to Alzheimer’s disease (AD) pathology. Transferrin (Tf) is a crucial player in iron homeostasis, thus highlighting its significance in AD. This study explores the plausible binding of HupA with Tf using molecular docking, molecular dynamics (MD) simulation, and free energy landscape (FEL) analyses. The docking results show that HupA binds to the functionally active region of Tf by forming three hydrogen bonds with Thr392, Glu394, and Ser688 and several hydrophobic interactions. The MD simulation analyses show that HupA binding is stable with Tf, causing minimal changes to the protein conformation. Moreover, principal component analysis (PCA) and FEL also depict the stable binding of HupA with Tf without any significant fluctuations. Further, fluorescence-based binding suggested excellent binding affinity of HupA with Tf affirming in silico observations. Isothermal titration calorimetry (ITC) advocated the spontaneous binding of HupA with Tf. This study provides an insight into the binding mechanism of HupA with Tf, and overall, the results show that HupA, after required experimentations, can be a better therapeutic agent for treating AD while targeting Tf. American Chemical Society 2022-10-17 /pmc/articles/PMC9631745/ /pubmed/36340147 http://dx.doi.org/10.1021/acsomega.2c03185 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Atiya, Akhtar
Alhumaydhi, Fahad A.
Shamsi, Anas
Olatunde, Ahmed
Alsagaby, Suliman A.
Al Abdulmonem, Waleed
Sharaf, Sharaf E.
Shahwan, Moyad
Mechanistic Insight into the Binding of Huperzine a with Human Transferrin: Computational, Spectroscopic and Calorimetric Approaches
title Mechanistic Insight into the Binding of Huperzine a with Human Transferrin: Computational, Spectroscopic and Calorimetric Approaches
title_full Mechanistic Insight into the Binding of Huperzine a with Human Transferrin: Computational, Spectroscopic and Calorimetric Approaches
title_fullStr Mechanistic Insight into the Binding of Huperzine a with Human Transferrin: Computational, Spectroscopic and Calorimetric Approaches
title_full_unstemmed Mechanistic Insight into the Binding of Huperzine a with Human Transferrin: Computational, Spectroscopic and Calorimetric Approaches
title_short Mechanistic Insight into the Binding of Huperzine a with Human Transferrin: Computational, Spectroscopic and Calorimetric Approaches
title_sort mechanistic insight into the binding of huperzine a with human transferrin: computational, spectroscopic and calorimetric approaches
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9631745/
https://www.ncbi.nlm.nih.gov/pubmed/36340147
http://dx.doi.org/10.1021/acsomega.2c03185
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