In Silico Approach for Identification of PI3K/MTOR Dual Inhibitors for Multiple Myeloma Treatment
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Date
2023
Journal Title
Journal ISSN
Volume Title
Publisher
Istanbul Univ
Open Access Color
GOLD
Green Open Access
No
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Publicly Funded
No
Abstract
Objective: Multiple myeloma is a hematologic malignancy in which targeting phosphoinositide 3 kinase (PI3K) and/or the mammalian target of rapamycin (mTOR) individually has been shown to have anti-proliferative effects, however, inhibiting both proteins simultaneously has been reported to have more effective results for its treatment. The aim of this study is to determine the molecular interactions and predicted inhibitory effects of 40 different dual inhibitors on mTOR, PI3K delta, and PI3K gamma to propose potentially the most effective dual inhibitor that targets the PI3K delta and PI3K gamma isoforms as well as the mTOR proteins since those isoforms are known to be predominant in multiple myeloma patients. Therefore, the focus in this study is built around the specific targeting of the PI3K delta and PI3K gamma isoforms from the multiple myeloma perspective. Materials and Methods: In silico docking experiments were conducted to determine the binding energies for different ligands that target mTOR, PI3K delta, and PI3K gamma. Protein-dual inhibitor complexes and the amino acids and bond types were visualized to identify molecular interactions. The absorption, distribution, metabolism, and excretion properties of dual inhibitors were analyzed and evaluated. Results: The binding affinity values were found to be between -7 and -9.9 kcal/mol. The toxicity prediction values of the selected dual inhibitors were obtained from the Pro-Tox-II web tool and classified according to the globally harmonized system of classification of labeling of chemicals. Conclusion: Correspondingly, among all dual inhibitors, Vistusertib is determined to be a promising compound against multiple myeloma cells by inhibiting both PI3K delta and PI3K gamma as well as mTORC1/2.
Description
Keywords
In Silico Search, Docking, Dual Inhibition, PI3K/MTOR Pathway, pi3k/mtor pathway, Structural Biology, dual inhibition, QH301-705.5, Yapısal Biyoloji, docking, Biology (General), In silico search;docking;dual inhibition;PI3K/mTOR pathway, in silico search
Fields of Science
Citation
WoS Q
N/A
Scopus Q
Q4

OpenCitations Citation Count
N/A
Source
European Journal of Biology
Volume
82
Issue
1
Start Page
1
End Page
11
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Scopus : 0
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Mendeley Readers : 4
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3
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0.0
Sustainable Development Goals
3
GOOD HEALTH AND WELL-BEING


