Cargando…

Identification of Natural Lead Compounds against Hemagglutinin-Esterase Surface Glycoprotein in Human Coronaviruses Investigated via MD Simulation, Principal Component Analysis, Cross-Correlation, H-Bond Plot and MMGBSA

The pandemic outbreak of human coronavirus is a global health concern that affects people of all ages and genders, but there is currently still no effective, approved and potential drug against human coronavirus, as many other coronavirus vaccines have serious side effects while the development of s...

Descripción completa

Detalles Bibliográficos
Autores principales: Ali, Iqra, Rasheed, Muhammad Asif, Cavalu, Simona, Rahim, Kashif, Ijaz, Sana, Yahya, Galal, Goh, Lucky Poh Wah, Popoviciu, Mihaela Simona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10044901/
https://www.ncbi.nlm.nih.gov/pubmed/36979773
http://dx.doi.org/10.3390/biomedicines11030793
_version_ 1784913461587738624
author Ali, Iqra
Rasheed, Muhammad Asif
Cavalu, Simona
Rahim, Kashif
Ijaz, Sana
Yahya, Galal
Goh, Lucky Poh Wah
Popoviciu, Mihaela Simona
author_facet Ali, Iqra
Rasheed, Muhammad Asif
Cavalu, Simona
Rahim, Kashif
Ijaz, Sana
Yahya, Galal
Goh, Lucky Poh Wah
Popoviciu, Mihaela Simona
author_sort Ali, Iqra
collection PubMed
description The pandemic outbreak of human coronavirus is a global health concern that affects people of all ages and genders, but there is currently still no effective, approved and potential drug against human coronavirus, as many other coronavirus vaccines have serious side effects while the development of small antiviral inhibitors has gained tremendous attention. For this research, HE was used as a therapeutic target, as the spike protein displays a high binding affinity for both host ACE2 and viral HE glycoprotein. Molecular docking, pharmacophore modelling and virtual screening of 38,000 natural compounds were employed to find out the best natural inhibitor against human coronaviruses with more efficiency and fewer side effects and further evaluated via MD simulation, PCA, DCCR and MMGBSA. The lead compound ‘Calceolarioside B’ was identified on the basis of pharmacophoric features which depict favorable binding (ΔGbind −37.6799 kcal/mol) with the HE(5N11) receptor that describes positive correlation movements in active site residues with better stability, a robust H-bond network, compactness and reliable ADMET properties. The Fraxinus sieboldiana Blume plant containing the Calceolarioside B compound could be used as a potential inhibitor that shows a higher efficacy and potency with fewer side effects. This research work will aid investigators in the testing and identification of chemicals that are effective and useful against human coronavirus.
format Online
Article
Text
id pubmed-10044901
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-100449012023-03-29 Identification of Natural Lead Compounds against Hemagglutinin-Esterase Surface Glycoprotein in Human Coronaviruses Investigated via MD Simulation, Principal Component Analysis, Cross-Correlation, H-Bond Plot and MMGBSA Ali, Iqra Rasheed, Muhammad Asif Cavalu, Simona Rahim, Kashif Ijaz, Sana Yahya, Galal Goh, Lucky Poh Wah Popoviciu, Mihaela Simona Biomedicines Article The pandemic outbreak of human coronavirus is a global health concern that affects people of all ages and genders, but there is currently still no effective, approved and potential drug against human coronavirus, as many other coronavirus vaccines have serious side effects while the development of small antiviral inhibitors has gained tremendous attention. For this research, HE was used as a therapeutic target, as the spike protein displays a high binding affinity for both host ACE2 and viral HE glycoprotein. Molecular docking, pharmacophore modelling and virtual screening of 38,000 natural compounds were employed to find out the best natural inhibitor against human coronaviruses with more efficiency and fewer side effects and further evaluated via MD simulation, PCA, DCCR and MMGBSA. The lead compound ‘Calceolarioside B’ was identified on the basis of pharmacophoric features which depict favorable binding (ΔGbind −37.6799 kcal/mol) with the HE(5N11) receptor that describes positive correlation movements in active site residues with better stability, a robust H-bond network, compactness and reliable ADMET properties. The Fraxinus sieboldiana Blume plant containing the Calceolarioside B compound could be used as a potential inhibitor that shows a higher efficacy and potency with fewer side effects. This research work will aid investigators in the testing and identification of chemicals that are effective and useful against human coronavirus. MDPI 2023-03-06 /pmc/articles/PMC10044901/ /pubmed/36979773 http://dx.doi.org/10.3390/biomedicines11030793 Text en © 2023 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
Ali, Iqra
Rasheed, Muhammad Asif
Cavalu, Simona
Rahim, Kashif
Ijaz, Sana
Yahya, Galal
Goh, Lucky Poh Wah
Popoviciu, Mihaela Simona
Identification of Natural Lead Compounds against Hemagglutinin-Esterase Surface Glycoprotein in Human Coronaviruses Investigated via MD Simulation, Principal Component Analysis, Cross-Correlation, H-Bond Plot and MMGBSA
title Identification of Natural Lead Compounds against Hemagglutinin-Esterase Surface Glycoprotein in Human Coronaviruses Investigated via MD Simulation, Principal Component Analysis, Cross-Correlation, H-Bond Plot and MMGBSA
title_full Identification of Natural Lead Compounds against Hemagglutinin-Esterase Surface Glycoprotein in Human Coronaviruses Investigated via MD Simulation, Principal Component Analysis, Cross-Correlation, H-Bond Plot and MMGBSA
title_fullStr Identification of Natural Lead Compounds against Hemagglutinin-Esterase Surface Glycoprotein in Human Coronaviruses Investigated via MD Simulation, Principal Component Analysis, Cross-Correlation, H-Bond Plot and MMGBSA
title_full_unstemmed Identification of Natural Lead Compounds against Hemagglutinin-Esterase Surface Glycoprotein in Human Coronaviruses Investigated via MD Simulation, Principal Component Analysis, Cross-Correlation, H-Bond Plot and MMGBSA
title_short Identification of Natural Lead Compounds against Hemagglutinin-Esterase Surface Glycoprotein in Human Coronaviruses Investigated via MD Simulation, Principal Component Analysis, Cross-Correlation, H-Bond Plot and MMGBSA
title_sort identification of natural lead compounds against hemagglutinin-esterase surface glycoprotein in human coronaviruses investigated via md simulation, principal component analysis, cross-correlation, h-bond plot and mmgbsa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10044901/
https://www.ncbi.nlm.nih.gov/pubmed/36979773
http://dx.doi.org/10.3390/biomedicines11030793
work_keys_str_mv AT aliiqra identificationofnaturalleadcompoundsagainsthemagglutininesterasesurfaceglycoproteininhumancoronavirusesinvestigatedviamdsimulationprincipalcomponentanalysiscrosscorrelationhbondplotandmmgbsa
AT rasheedmuhammadasif identificationofnaturalleadcompoundsagainsthemagglutininesterasesurfaceglycoproteininhumancoronavirusesinvestigatedviamdsimulationprincipalcomponentanalysiscrosscorrelationhbondplotandmmgbsa
AT cavalusimona identificationofnaturalleadcompoundsagainsthemagglutininesterasesurfaceglycoproteininhumancoronavirusesinvestigatedviamdsimulationprincipalcomponentanalysiscrosscorrelationhbondplotandmmgbsa
AT rahimkashif identificationofnaturalleadcompoundsagainsthemagglutininesterasesurfaceglycoproteininhumancoronavirusesinvestigatedviamdsimulationprincipalcomponentanalysiscrosscorrelationhbondplotandmmgbsa
AT ijazsana identificationofnaturalleadcompoundsagainsthemagglutininesterasesurfaceglycoproteininhumancoronavirusesinvestigatedviamdsimulationprincipalcomponentanalysiscrosscorrelationhbondplotandmmgbsa
AT yahyagalal identificationofnaturalleadcompoundsagainsthemagglutininesterasesurfaceglycoproteininhumancoronavirusesinvestigatedviamdsimulationprincipalcomponentanalysiscrosscorrelationhbondplotandmmgbsa
AT gohluckypohwah identificationofnaturalleadcompoundsagainsthemagglutininesterasesurfaceglycoproteininhumancoronavirusesinvestigatedviamdsimulationprincipalcomponentanalysiscrosscorrelationhbondplotandmmgbsa
AT popoviciumihaelasimona identificationofnaturalleadcompoundsagainsthemagglutininesterasesurfaceglycoproteininhumancoronavirusesinvestigatedviamdsimulationprincipalcomponentanalysiscrosscorrelationhbondplotandmmgbsa