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Article

Computational Investigations on the Natural Small Molecule as an Inhibitor of Programmed Death Ligand 1 for Cancer Immunotherapy

1
Department of Life Science, School of Basic Science and Research, Sharda University, Greater Noida 201310, Uttar Pradesh, India
2
Center for Bioinformatics, Computational and Systems Biology, Pathfinder Research and Training Foundation, Greater Noida 201308, Uttar Pradesh, India
3
Department of Biology, Faculty of Science, King Khalid University, Abha 62529, Saudi Arabia
4
Department of Botany and Microbiology, Faculty of Science, South Valley University, Qena 83523, Egypt
5
Department of Applied Sciences, Indian Institute of Information Technology Allahabad, Allahabad 211015, Uttar Pradesh, India
6
Laboratory of Ligand Engineering, Institute of Biotechnology of the Czech Academy of Sciences, v.v.i., BIOCEV Research Center, 25250 Vestec, Czech Republic
*
Authors to whom correspondence should be addressed.
Life 2022, 12(5), 659; https://doi.org/10.3390/life12050659
Submission received: 1 April 2022 / Revised: 22 April 2022 / Accepted: 27 April 2022 / Published: 29 April 2022
(This article belongs to the Special Issue New Trends in Pharmaceutical Science)

Abstract

Several therapeutic monoclonal antibodies approved by the FDA are available against the PD-1/PD-L1 (programmed death 1/programmed death ligand 1) immune checkpoint axis, which has been an unprecedented success in cancer treatment. However, existing therapeutics against PD-L1, including small molecule inhibitors, have certain drawbacks such as high cost and drug resistance that challenge the currently available anti-PD-L1 therapy. Therefore, this study presents the screening of 32,552 compounds from the Natural Product Atlas database against PD-L1, including three steps of structure-based virtual screening followed by binding free energy to refine the ideal conformation of potent PD-L1 inhibitors. Subsequently, five natural compounds, i.e., Neoenactin B1, Actinofuranone I, Cosmosporin, Ganocapenoid A, and 3-[3-hydroxy-4-(3-methylbut-2-enyl)phenyl]-5-(4-hydroxybenzyl)-4-methyldihydrofuran-2(3H)-one, were collected based on the ADMET (absorption, distribution, metabolism, excretion, and toxicity) profiling and binding free energy (>−60 kcal/mol) for further computational investigation in comparison to co-crystallized ligand, i.e., JQT inhibitor. Based on interaction mapping, explicit 100 ns molecular dynamics simulation, and end-point binding free energy calculations, the selected natural compounds were marked for substantial stability with PD-L1 via intermolecular interactions (hydrogen and hydrophobic) with essential residues in comparison to the JQT inhibitor. Collectively, the calculated results advocate the selected natural compounds as the putative potent inhibitors of PD-L1 and, therefore, can be considered for further development of PD-L1 immune checkpoint inhibitors in cancer immunotherapy.
Keywords: programmed death ligand 1; natural products; immunotherapy; Neoenactin B1; molecular dynamics simulation programmed death ligand 1; natural products; immunotherapy; Neoenactin B1; molecular dynamics simulation
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MDPI and ACS Style

Kumar, G.S.; Moustafa, M.; Sahoo, A.K.; Malý, P.; Bharadwaj, S. Computational Investigations on the Natural Small Molecule as an Inhibitor of Programmed Death Ligand 1 for Cancer Immunotherapy. Life 2022, 12, 659. https://doi.org/10.3390/life12050659

AMA Style

Kumar GS, Moustafa M, Sahoo AK, Malý P, Bharadwaj S. Computational Investigations on the Natural Small Molecule as an Inhibitor of Programmed Death Ligand 1 for Cancer Immunotherapy. Life. 2022; 12(5):659. https://doi.org/10.3390/life12050659

Chicago/Turabian Style

Kumar, Geethu S, Mahmoud Moustafa, Amaresh Kumar Sahoo, Petr Malý, and Shiv Bharadwaj. 2022. "Computational Investigations on the Natural Small Molecule as an Inhibitor of Programmed Death Ligand 1 for Cancer Immunotherapy" Life 12, no. 5: 659. https://doi.org/10.3390/life12050659

APA Style

Kumar, G. S., Moustafa, M., Sahoo, A. K., Malý, P., & Bharadwaj, S. (2022). Computational Investigations on the Natural Small Molecule as an Inhibitor of Programmed Death Ligand 1 for Cancer Immunotherapy. Life, 12(5), 659. https://doi.org/10.3390/life12050659

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