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Identification of Phytoconstituents as Potent Inhibitors of Casein Kinase-1 Alpha Using Virtual Screening and Molecular Dynamics Simulations

Authors
Shafie, A.Khan, S.ZehraMohammad, T.Anjum, F.Hasan, G.M.Yadav, D.K.Hassan, M.I.
Issue Date
Dec-2021
Publisher
MDPI
Keywords
Casein kinase-1 alpha; Drug discovery; Dynamical cross-correlation matrices; Molecular dynamics simulation; Phytoconstituents; Principal components analysis; Virtual screening
Citation
Pharmaceutics, v.13, no.12
Journal Title
Pharmaceutics
Volume
13
Number
12
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/84393
DOI
10.3390/pharmaceutics13122157
ISSN
1999-4923
Abstract
Casein kinase-1 alpha (CK1α) is a multifunctional protein kinase that belongs to the serine/threonine kinases of the CK1α family. It is involved in various signaling pathways associated with chromosome segregation, cell metabolism, cell cycle progression, apoptosis, autophagy, etc. It has been known to involve in the progression of many diseases, including cancer, neurodegeneration, obesity, and behavioral disorders. The elevated expression of CK1α in diseased conditions facilitates its selective targeting for therapeutic management. Here, we have performed virtual screening of phytoconstituents from the IMPPAT database seeking potential inhibitors of CK1α. First, a cluster of compounds was retrieved based on physicochemical parameters following Lipinski’s rules and PAINS filter. Further, high-affinity hits against CK1α were obtained based on their binding affinity score. Furthermore, the ADMET, PAINS, and PASS evaluation was carried out to select more potent hits. Finally, following the interaction analysis, we elucidated three phytoconstituents, Semiglabrinol, Curcusone_A, and Liriodenine, posturing considerable affinity and specificity towards the CK1α binding pocket. The result was further evaluated by molecular dynamics (MD) simulations, dynamical cross-correlation matrix (DCCM), and principal components analysis (PCA), which revealed that binding of the selected compounds, especially Semiglabrinol, stabilizes CK1α and leads to fewer conformational fluctuations. The MM-PBSA analysis suggested an appreciable binding affinity of all three compounds toward CK1α. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
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