A virtual screening investigation to identify bioactive natural compounds as potential inhibitors of cyclin-dependent
Akhtar Atiya1, Habiba Shahidi2, Taj Mohammad3
1Department of Pharmacognosy, College of Pharmacy, King Khalid University (KKU), Abha, Saudi Arabia.
Abstract:
Cyclin-dependent kinase 9 (CDK9) is a transcription-associated protein involved in controlling the cell cycle and is often deregulated in stress conditions. CDK9 is being studied as a well-known druggable target for developing effective therapeutics against a wide range of cancer, cardiac dysfunction and inflammatory diseases. Owing to the significance of CDK9 in the etiology of hematological and solid malignancies, its structure, biological activity, regulation and its pharmacological inhibition are being explored for therapeutic management of cancer. We employed a structure-based virtual high-throughput screening of bioactive compounds from the IMPPAT database to discover potential bioactive inhibitors of CDK9. The preliminary results were obtained from the Lipinski criteria, ADMET parameters and sorting compounds without any PAINS patterns. Subsequently, binding affinity and selectivity analyses were used to find effective CDK9 hits. This screening resulted in the identification of two natural compounds, Glabrene and Guggulsterone with high affinity and specificity for the CDK9 binding site. Both compounds exhibit drug-like characteristics, as projected by ADMET analysis, physicochemical data and PASS evaluation. Both compounds preferentially bind to the ATP-binding pocket of CDK9 and interact with functionally important residues. Further, the dynamics and consistency of CDK9 interaction with Glabrene and Guggulsteron were evaluated through all-atom molecular dynamic (MD) simulations which suggested the stability of both complexes. The results might be deployed to introduce novel CDK9 inhibitors that may treat life-threatening diseases, including cancer.Communicated by Ramaswamy H. Sarma.
Insights
Researchers identified Glabrene and Guggulsterone as potential inhibitors of Cyclin-dependent kinase 9 (CDK9). These natural compounds show high affinity and stability, offering new therapeutic avenues for cancer and other diseases.
Area of Science:
- Biochemistry
- Pharmacology
- Computational Biology
Background:
- Cyclin-dependent kinase 9 (CDK9) is a key regulator of transcription and cell cycle, frequently deregulated in diseases like cancer.
- CDK9 is a validated drug target for various conditions, including hematological and solid malignancies, cardiac dysfunction, and inflammatory diseases.
Purpose of the Study:
- To discover novel, natural compound inhibitors of CDK9 using structure-based virtual screening.
- To identify compounds with high affinity, specificity, and drug-like properties for CDK9.
Main Methods:
- Structure-based virtual high-throughput screening of the IMPPAT database.
- Application of Lipinski's criteria, ADMET analysis, and PAINS filtering for preliminary compound selection.
- Binding affinity, selectivity, and molecular dynamic (MD) simulations to evaluate compound-protein interactions.
Main Results:
- Identification of two natural compounds, Glabrene and Guggulsterone, as potent CDK9 inhibitors.
- Both compounds demonstrated high binding affinity and specificity for the CDK9 ATP-binding pocket.
- Molecular dynamics simulations confirmed the stable interaction of Glabrene and Guggulsterone with CDK9.
Conclusions:
- Glabrene and Guggulsterone are promising natural inhibitors of CDK9 with favorable drug-like characteristics.
- These compounds represent potential leads for developing novel therapeutics against CDK9-related diseases, particularly cancer.
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