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Urtica dioica Agglutinin: A plant protein candidate for inhibition of SARS-COV-2 receptor-binding domain for control of Covid19 Infection

Despite using effective drugs and vaccines for Covid 19, due to some limitations of current strategies and the high rate of coronavirus mutation, the development of medicines with effective inhibitory activity against this infection is essential. The SARS-CoV-2 enters the cell by attaching its recep...

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Autores principales: Sabzian-Molaei, Fatemeh, Nasiri Khalili, Mohammad Ali, Sabzian-Molaei, Mohammad, Shahsavarani, Hosein, Fattah Pour, Alireza, Molaei Rad, Ahmad, Hadi, Amin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9333307/
https://www.ncbi.nlm.nih.gov/pubmed/35901082
http://dx.doi.org/10.1371/journal.pone.0268156
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author Sabzian-Molaei, Fatemeh
Nasiri Khalili, Mohammad Ali
Sabzian-Molaei, Mohammad
Shahsavarani, Hosein
Fattah Pour, Alireza
Molaei Rad, Ahmad
Hadi, Amin
author_facet Sabzian-Molaei, Fatemeh
Nasiri Khalili, Mohammad Ali
Sabzian-Molaei, Mohammad
Shahsavarani, Hosein
Fattah Pour, Alireza
Molaei Rad, Ahmad
Hadi, Amin
author_sort Sabzian-Molaei, Fatemeh
collection PubMed
description Despite using effective drugs and vaccines for Covid 19, due to some limitations of current strategies and the high rate of coronavirus mutation, the development of medicines with effective inhibitory activity against this infection is essential. The SARS-CoV-2 enters the cell by attaching its receptor-binding domain (RBD) of Spike to angiotensin-converting enzyme-2 (ACE2). According to previous studies, the natural peptide Urtica dioica agglutinin (UDA) exhibited an antiviral effect on SARS-CoV, but its mechanism has not precisely been elucidated. Here, we studied the interaction between UDA and RBD of Spike protein of SARS-CoV-2. So, protein-protein docking of RBD-UDA was performed using Cluspro 2.0. To further confirm the stability of the complex, the RBD-UDA docked complex with higher binding affinity was studied using Molecular Dynamic simulation (via Gromacs 2020.2), and MM-PBSA calculated the binding free energy of the system. In addition, ELISA assay was used to examine the binding of UDA with RBD protein. Results were compared to ELISA of RBD-bound samples of convalescent serum IgG (from donors who recovered from Covid 19). Finally, the toxicity of UDA is assessed by using MTT assay. The docking results show UDA binds to the RBD binding site. MD simulation illustrates the UDA-RBD complex is stable during 100 ns of simulation, and the average binding energy was calculated to be -47.505 kJ/mol. ELISA and, MTT results show that UDA binds to RBD like IgG-RBD binding and may be safe in human cells. Data presented here indicate UDA interaction with S-protein inhibits the binding sites of RBD, it can prevent the virus from attaching to ACE2 and entering the host cell.
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spelling pubmed-93333072022-07-29 Urtica dioica Agglutinin: A plant protein candidate for inhibition of SARS-COV-2 receptor-binding domain for control of Covid19 Infection Sabzian-Molaei, Fatemeh Nasiri Khalili, Mohammad Ali Sabzian-Molaei, Mohammad Shahsavarani, Hosein Fattah Pour, Alireza Molaei Rad, Ahmad Hadi, Amin PLoS One Research Article Despite using effective drugs and vaccines for Covid 19, due to some limitations of current strategies and the high rate of coronavirus mutation, the development of medicines with effective inhibitory activity against this infection is essential. The SARS-CoV-2 enters the cell by attaching its receptor-binding domain (RBD) of Spike to angiotensin-converting enzyme-2 (ACE2). According to previous studies, the natural peptide Urtica dioica agglutinin (UDA) exhibited an antiviral effect on SARS-CoV, but its mechanism has not precisely been elucidated. Here, we studied the interaction between UDA and RBD of Spike protein of SARS-CoV-2. So, protein-protein docking of RBD-UDA was performed using Cluspro 2.0. To further confirm the stability of the complex, the RBD-UDA docked complex with higher binding affinity was studied using Molecular Dynamic simulation (via Gromacs 2020.2), and MM-PBSA calculated the binding free energy of the system. In addition, ELISA assay was used to examine the binding of UDA with RBD protein. Results were compared to ELISA of RBD-bound samples of convalescent serum IgG (from donors who recovered from Covid 19). Finally, the toxicity of UDA is assessed by using MTT assay. The docking results show UDA binds to the RBD binding site. MD simulation illustrates the UDA-RBD complex is stable during 100 ns of simulation, and the average binding energy was calculated to be -47.505 kJ/mol. ELISA and, MTT results show that UDA binds to RBD like IgG-RBD binding and may be safe in human cells. Data presented here indicate UDA interaction with S-protein inhibits the binding sites of RBD, it can prevent the virus from attaching to ACE2 and entering the host cell. Public Library of Science 2022-07-28 /pmc/articles/PMC9333307/ /pubmed/35901082 http://dx.doi.org/10.1371/journal.pone.0268156 Text en © 2022 Sabzian-Molaei et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Sabzian-Molaei, Fatemeh
Nasiri Khalili, Mohammad Ali
Sabzian-Molaei, Mohammad
Shahsavarani, Hosein
Fattah Pour, Alireza
Molaei Rad, Ahmad
Hadi, Amin
Urtica dioica Agglutinin: A plant protein candidate for inhibition of SARS-COV-2 receptor-binding domain for control of Covid19 Infection
title Urtica dioica Agglutinin: A plant protein candidate for inhibition of SARS-COV-2 receptor-binding domain for control of Covid19 Infection
title_full Urtica dioica Agglutinin: A plant protein candidate for inhibition of SARS-COV-2 receptor-binding domain for control of Covid19 Infection
title_fullStr Urtica dioica Agglutinin: A plant protein candidate for inhibition of SARS-COV-2 receptor-binding domain for control of Covid19 Infection
title_full_unstemmed Urtica dioica Agglutinin: A plant protein candidate for inhibition of SARS-COV-2 receptor-binding domain for control of Covid19 Infection
title_short Urtica dioica Agglutinin: A plant protein candidate for inhibition of SARS-COV-2 receptor-binding domain for control of Covid19 Infection
title_sort urtica dioica agglutinin: a plant protein candidate for inhibition of sars-cov-2 receptor-binding domain for control of covid19 infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9333307/
https://www.ncbi.nlm.nih.gov/pubmed/35901082
http://dx.doi.org/10.1371/journal.pone.0268156
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