Cargando…

Targeting Glutaminase by Natural Compounds: Structure-Based Virtual Screening and Molecular Dynamics Simulation Approach to Suppress Cancer Progression

Cancer cells change their glucose and glutamine (GLU) metabolism to obtain the energy required to continue growing. Glutaminase (GLS) plays a crucial role in promoting cell metabolism for cancer cell growth; targeting GLU metabolism by inhibiting GLS has attracted interest as a potential cancer mana...

Descripción completa

Detalles Bibliográficos
Autores principales: Tabrez, Shams, Zughaibi, Torki A., Hoque, Mehboob, Suhail, Mohd, Khan, Mohammad Imran, Khan, Azhar U.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370672/
https://www.ncbi.nlm.nih.gov/pubmed/35956989
http://dx.doi.org/10.3390/molecules27155042
_version_ 1784766875861778432
author Tabrez, Shams
Zughaibi, Torki A.
Hoque, Mehboob
Suhail, Mohd
Khan, Mohammad Imran
Khan, Azhar U.
author_facet Tabrez, Shams
Zughaibi, Torki A.
Hoque, Mehboob
Suhail, Mohd
Khan, Mohammad Imran
Khan, Azhar U.
author_sort Tabrez, Shams
collection PubMed
description Cancer cells change their glucose and glutamine (GLU) metabolism to obtain the energy required to continue growing. Glutaminase (GLS) plays a crucial role in promoting cell metabolism for cancer cell growth; targeting GLU metabolism by inhibiting GLS has attracted interest as a potential cancer management strategy. Herein, we employed a sequential screening of traditional Chinese medicine (TCM) database followed by drug-likeness and molecular dynamics simulations against the active site of GLS. We report 12 potent compounds after screening the TCM database against GLS, followed by a drug-likeness filter with Lipinski and Veber rule criteria. Among them, ZINC03978829 and ZINC32296657 were found to have higher binding energy (BE) values than the control compound 6-Diazo-5-Oxo-L-Norleucine, with BEs of −9.3 and −9.7 kcal/mol, respectively, compared to the BE of 6-Diazo-5-Oxo-L-Norleucine (−4.7 kcal/mol) with GLS. Molecular dynamics simulations were used to evaluate the results further, and a 100 ns MD simulation revealed that the hits form stable complexes with GLS and formed 2–5 hydrogen bond interactions. This study indicates that these hits might be employed as GLS inhibitors in the battle against cancer. However, more laboratory tests are a prerequisite to optimize them as GLS inhibitors.
format Online
Article
Text
id pubmed-9370672
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93706722022-08-12 Targeting Glutaminase by Natural Compounds: Structure-Based Virtual Screening and Molecular Dynamics Simulation Approach to Suppress Cancer Progression Tabrez, Shams Zughaibi, Torki A. Hoque, Mehboob Suhail, Mohd Khan, Mohammad Imran Khan, Azhar U. Molecules Article Cancer cells change their glucose and glutamine (GLU) metabolism to obtain the energy required to continue growing. Glutaminase (GLS) plays a crucial role in promoting cell metabolism for cancer cell growth; targeting GLU metabolism by inhibiting GLS has attracted interest as a potential cancer management strategy. Herein, we employed a sequential screening of traditional Chinese medicine (TCM) database followed by drug-likeness and molecular dynamics simulations against the active site of GLS. We report 12 potent compounds after screening the TCM database against GLS, followed by a drug-likeness filter with Lipinski and Veber rule criteria. Among them, ZINC03978829 and ZINC32296657 were found to have higher binding energy (BE) values than the control compound 6-Diazo-5-Oxo-L-Norleucine, with BEs of −9.3 and −9.7 kcal/mol, respectively, compared to the BE of 6-Diazo-5-Oxo-L-Norleucine (−4.7 kcal/mol) with GLS. Molecular dynamics simulations were used to evaluate the results further, and a 100 ns MD simulation revealed that the hits form stable complexes with GLS and formed 2–5 hydrogen bond interactions. This study indicates that these hits might be employed as GLS inhibitors in the battle against cancer. However, more laboratory tests are a prerequisite to optimize them as GLS inhibitors. MDPI 2022-08-08 /pmc/articles/PMC9370672/ /pubmed/35956989 http://dx.doi.org/10.3390/molecules27155042 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
Tabrez, Shams
Zughaibi, Torki A.
Hoque, Mehboob
Suhail, Mohd
Khan, Mohammad Imran
Khan, Azhar U.
Targeting Glutaminase by Natural Compounds: Structure-Based Virtual Screening and Molecular Dynamics Simulation Approach to Suppress Cancer Progression
title Targeting Glutaminase by Natural Compounds: Structure-Based Virtual Screening and Molecular Dynamics Simulation Approach to Suppress Cancer Progression
title_full Targeting Glutaminase by Natural Compounds: Structure-Based Virtual Screening and Molecular Dynamics Simulation Approach to Suppress Cancer Progression
title_fullStr Targeting Glutaminase by Natural Compounds: Structure-Based Virtual Screening and Molecular Dynamics Simulation Approach to Suppress Cancer Progression
title_full_unstemmed Targeting Glutaminase by Natural Compounds: Structure-Based Virtual Screening and Molecular Dynamics Simulation Approach to Suppress Cancer Progression
title_short Targeting Glutaminase by Natural Compounds: Structure-Based Virtual Screening and Molecular Dynamics Simulation Approach to Suppress Cancer Progression
title_sort targeting glutaminase by natural compounds: structure-based virtual screening and molecular dynamics simulation approach to suppress cancer progression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370672/
https://www.ncbi.nlm.nih.gov/pubmed/35956989
http://dx.doi.org/10.3390/molecules27155042
work_keys_str_mv AT tabrezshams targetingglutaminasebynaturalcompoundsstructurebasedvirtualscreeningandmoleculardynamicssimulationapproachtosuppresscancerprogression
AT zughaibitorkia targetingglutaminasebynaturalcompoundsstructurebasedvirtualscreeningandmoleculardynamicssimulationapproachtosuppresscancerprogression
AT hoquemehboob targetingglutaminasebynaturalcompoundsstructurebasedvirtualscreeningandmoleculardynamicssimulationapproachtosuppresscancerprogression
AT suhailmohd targetingglutaminasebynaturalcompoundsstructurebasedvirtualscreeningandmoleculardynamicssimulationapproachtosuppresscancerprogression
AT khanmohammadimran targetingglutaminasebynaturalcompoundsstructurebasedvirtualscreeningandmoleculardynamicssimulationapproachtosuppresscancerprogression
AT khanazharu targetingglutaminasebynaturalcompoundsstructurebasedvirtualscreeningandmoleculardynamicssimulationapproachtosuppresscancerprogression