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Published on: August 25, 2023
A novel in silico approach for identifying multi-target JAK/STAT inhibitors as anticancer agents
Alessia Bono1, Gabriele La Monica1, Federica Alamia1
1Dipartimento di Scienze e Tecnologie Biologiche Chimiche e Farmaceutiche "STEBICEF" - University of Palermo, Viale delle Scienze - Ed. 17, 90128, Palermo, Italy.
Abstract:
Apoptosis, or programmed cell death, plays a pivotal role in maintaining cellular homeostasis by eliminating damaged or surplus cells. Dysregulation of signaling pathways, such as JAK/STAT, is implicated in various diseases, rendering them attractive therapeutic targets for potential new anticancer drugs. Concurrently, it is imperative to preserve essential proteins like TNF-α and p53 to maintain normal cellular life/death balance. In light of these considerations, this study employs an innovative in silico hybrid and hierarchical virtual screening approach aimed at identifying JAK/STAT multi-target inhibitors as potential anticancer agents for several tumoral diseases. Initially, the Biotarget Predictor Tool is utilized in a combined ON/OFF-target/Multitarget mode using the extensive National Cancer Institute (NCI) database, previously filtered by ADME evaluation tools. Subsequently, Molecular Docking studies are conducted on JAK2, JAK3, and STAT3, facilitating the identification of the most promising compound, 755435. Finally, Molecular Dynamics Simulations validate the high stability of the potential multitarget inhibitor 755435 in complex with JAK2, JAK3, and STAT3.
Insights
This study identifies a novel multi-target inhibitor for JAK/STAT pathways, crucial in cancer. Computational methods screened compounds to find a promising agent for potential anticancer drug development.
Area of Science:
- Biochemistry
- Computational Biology
- Pharmacology
Background:
- Apoptosis is vital for cellular homeostasis, with dysregulated JAK/STAT signaling linked to diseases.
- Targeting JAK/STAT pathways offers potential for novel anticancer drug development.
- Maintaining essential protein functions like TNF-α and p53 is critical for cellular balance.
Purpose of the Study:
- To identify JAK/STAT multi-target inhibitors using an in silico hybrid and hierarchical virtual screening approach.
- To discover potential anticancer agents for various tumoral diseases.
Main Methods:
- Utilized Biotarget Predictor Tool in ON/OFF-target/Multitarget mode on the NCI database, pre-filtered by ADME tools.
- Performed Molecular Docking studies on JAK2, JAK3, and STAT3.
- Conducted Molecular Dynamics Simulations to validate compound stability.
Main Results:
- Identified compound 755435 as a promising multi-target inhibitor.
- Validated the high stability of compound 755435 in complex with JAK2, JAK3, and STAT3.
Conclusions:
- The in silico approach successfully identified a potential multi-target inhibitor for JAK/STAT pathways.
- Compound 755435 shows promise as an anticancer agent for tumoral diseases.
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