Identification of Activated Cdc42-Associated Kinase Inhibitors as Potential Anticancer Agents Using Pharmacoinformatic Approachesopen access
- Authors
- Kumar, Vikas; Kumar, Raj; Parate, Shraddha; Danishuddin; Lee, Gihwan; Kwon, Moonhyuk; Jeong, Seong-Hee; Ro, Hyeon-Su; Lee, Keun Woo; Kim, Seon-Won
- Issue Date
- Feb-2023
- Publisher
- Multidisciplinary Digital Publishing Institute (MDPI)
- Keywords
- ACK1; cancer; docking; inhibitor; molecular dynamics simulations; pharmacophore modeling
- Citation
- Biomolecules, v.13, no.2
- Indexed
- SCIE
SCOPUS
- Journal Title
- Biomolecules
- Volume
- 13
- Number
- 2
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/30320
- DOI
- 10.3390/biom13020217
- ISSN
- 2218-273X
2218-273X
- Abstract
- Background: Activated Cdc42-associated kinase (ACK1) is essential for numerous cellular functions, such as growth, proliferation, and migration. ACK1 signaling occurs through multiple receptor tyrosine kinases; therefore, its inhibition can provide effective antiproliferative effects against multiple human cancers. A number of ACK1-specific inhibitors were designed and discovered in the previous decade, but none have reached the clinic. Potent and selective ACK1 inhibitors are urgently needed. Methods: In the present investigation, the pharmacophore model (PM) was rationally built utilizing two distinct inhibitors coupled with ACK1 crystal structures. The generated PM was utilized to screen the drug-like database generated from the four chemical databases. The binding mode of pharmacophore-mapped compounds was predicted using a molecular docking (MD) study. The selected hit-protein complexes from MD were studied under all-atom molecular dynamics simulations (MDS) for 500 ns. The obtained trajectories were ranked using binding free energy calculations (ΔG kJ/mol) and Gibb’s free energy landscape. Results: Our results indicate that the three hit compounds displayed higher binding affinity toward ACK1 when compared with the known multi-kinase inhibitor dasatinib. The inter-molecular interactions of Hit1 and Hit3 reveal that compounds form desirable hydrogen bond interactions with gatekeeper T205, hinge region A208, and DFG motif D270. As a result, we anticipate that the proposed scaffolds might help in the design of promising selective ACK1 inhibitors. © 2023 by the authors.
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- 학과간협동과정 > 바이오의료빅데이터학과 > Journal Articles

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