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Target specificity of selective bioactive compounds in blocking α-dystroglycan receptor to suppress Lassa virus infection: an in silico approach
Lassa hemorrhagic fever, caused by Lassa mammarenavirus (LASV) infection, accumulates up to 5000 deaths every year. Currently, there is no vaccine available to combat this disease. In this study, a library of 200 bioactive compounds was virtually screened to study their drug-likeness with the capaci...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Editorial Department of Journal of Biomedical Research
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8637655/ https://www.ncbi.nlm.nih.gov/pubmed/34857680 http://dx.doi.org/10.7555/JBR.35.20210111 |
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author | Arefin, Adittya Ismail Ema, Tanzila Islam, Tamnia Saddam Hossen, Md. Islam, Tariqul Al Azad, Salauddin Nasir Uddin Badal, Md. Aminul Islam, Md. Biswas, Partha Alam, Nafee Ul Islam, Enayetul Anjum, Maliha Masud, Afsana Shaikh Kamran, Md. Rahman, Ahsab Kumar Paul, Parag |
author_facet | Arefin, Adittya Ismail Ema, Tanzila Islam, Tamnia Saddam Hossen, Md. Islam, Tariqul Al Azad, Salauddin Nasir Uddin Badal, Md. Aminul Islam, Md. Biswas, Partha Alam, Nafee Ul Islam, Enayetul Anjum, Maliha Masud, Afsana Shaikh Kamran, Md. Rahman, Ahsab Kumar Paul, Parag |
author_sort | Arefin, Adittya |
collection | PubMed |
description | Lassa hemorrhagic fever, caused by Lassa mammarenavirus (LASV) infection, accumulates up to 5000 deaths every year. Currently, there is no vaccine available to combat this disease. In this study, a library of 200 bioactive compounds was virtually screened to study their drug-likeness with the capacity to block the α-dystroglycan (α-DG) receptor and prevent LASV influx. Following rigorous absorption, distribution, metabolism, and excretion (ADME) and quantitative structure-activity relationship (QSAR) profiling, molecular docking was conducted with the top ligands against the α-DG receptor. The compounds chrysin, reticuline, and 3-caffeoylshikimic acid emerged as the top three ligands in terms of binding affinity. Post-docking analysis revealed that interactions with Arg76, Asn224, Ser259, and Lys302 amino acid residues of the receptor protein were important for the optimum binding affinity of ligands. Molecular dynamics simulation was performed comprehensively to study the stability of the protein-ligand complexes. In-depth assessment of root-mean-square deviation (RMSD), root mean square fluctuation (RMSF), polar surface area (PSA), B-Factor, radius of gyration (Rg), solvent accessible surface area (SASA), and molecular surface area (MolSA) values of the protein-ligand complexes affirmed that the candidates with the best binding affinity formed the most stable protein-ligand complexes. To authenticate the potentialities of the ligands as target-specific drugs, an in vivo study is underway in real time as the continuation of the research. |
format | Online Article Text |
id | pubmed-8637655 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Editorial Department of Journal of Biomedical Research |
record_format | MEDLINE/PubMed |
spelling | pubmed-86376552021-12-05 Target specificity of selective bioactive compounds in blocking α-dystroglycan receptor to suppress Lassa virus infection: an in silico approach Arefin, Adittya Ismail Ema, Tanzila Islam, Tamnia Saddam Hossen, Md. Islam, Tariqul Al Azad, Salauddin Nasir Uddin Badal, Md. Aminul Islam, Md. Biswas, Partha Alam, Nafee Ul Islam, Enayetul Anjum, Maliha Masud, Afsana Shaikh Kamran, Md. Rahman, Ahsab Kumar Paul, Parag J Biomed Res Original Article Lassa hemorrhagic fever, caused by Lassa mammarenavirus (LASV) infection, accumulates up to 5000 deaths every year. Currently, there is no vaccine available to combat this disease. In this study, a library of 200 bioactive compounds was virtually screened to study their drug-likeness with the capacity to block the α-dystroglycan (α-DG) receptor and prevent LASV influx. Following rigorous absorption, distribution, metabolism, and excretion (ADME) and quantitative structure-activity relationship (QSAR) profiling, molecular docking was conducted with the top ligands against the α-DG receptor. The compounds chrysin, reticuline, and 3-caffeoylshikimic acid emerged as the top three ligands in terms of binding affinity. Post-docking analysis revealed that interactions with Arg76, Asn224, Ser259, and Lys302 amino acid residues of the receptor protein were important for the optimum binding affinity of ligands. Molecular dynamics simulation was performed comprehensively to study the stability of the protein-ligand complexes. In-depth assessment of root-mean-square deviation (RMSD), root mean square fluctuation (RMSF), polar surface area (PSA), B-Factor, radius of gyration (Rg), solvent accessible surface area (SASA), and molecular surface area (MolSA) values of the protein-ligand complexes affirmed that the candidates with the best binding affinity formed the most stable protein-ligand complexes. To authenticate the potentialities of the ligands as target-specific drugs, an in vivo study is underway in real time as the continuation of the research. Editorial Department of Journal of Biomedical Research 2021-11 2021-11-06 /pmc/articles/PMC8637655/ /pubmed/34857680 http://dx.doi.org/10.7555/JBR.35.20210111 Text en Copyright and License information: Journal of Biomedical Research, CAS Springer-Verlag Berlin Heidelberg 2021 https://creativecommons.org/licenses/by-nc-sa/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-Share Alike 4.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/4.0/ (https://creativecommons.org/licenses/by-nc-sa/4.0/) |
spellingShingle | Original Article Arefin, Adittya Ismail Ema, Tanzila Islam, Tamnia Saddam Hossen, Md. Islam, Tariqul Al Azad, Salauddin Nasir Uddin Badal, Md. Aminul Islam, Md. Biswas, Partha Alam, Nafee Ul Islam, Enayetul Anjum, Maliha Masud, Afsana Shaikh Kamran, Md. Rahman, Ahsab Kumar Paul, Parag Target specificity of selective bioactive compounds in blocking α-dystroglycan receptor to suppress Lassa virus infection: an in silico approach |
title | Target specificity of selective bioactive compounds in blocking α-dystroglycan receptor to suppress Lassa virus infection: an in
silico approach
|
title_full | Target specificity of selective bioactive compounds in blocking α-dystroglycan receptor to suppress Lassa virus infection: an in
silico approach
|
title_fullStr | Target specificity of selective bioactive compounds in blocking α-dystroglycan receptor to suppress Lassa virus infection: an in
silico approach
|
title_full_unstemmed | Target specificity of selective bioactive compounds in blocking α-dystroglycan receptor to suppress Lassa virus infection: an in
silico approach
|
title_short | Target specificity of selective bioactive compounds in blocking α-dystroglycan receptor to suppress Lassa virus infection: an in
silico approach
|
title_sort | target specificity of selective bioactive compounds in blocking α-dystroglycan receptor to suppress lassa virus infection: an in
silico approach |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8637655/ https://www.ncbi.nlm.nih.gov/pubmed/34857680 http://dx.doi.org/10.7555/JBR.35.20210111 |
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