3CL like protease (3CLpro or Mpro) is one of the main proteases of 2019-nCoV. The 3CLpro is a nonstructural protein of SARS-CoV and has an essential role in viral replication and transcription, thus, could be a potential target for anti-SARS drug development. The present study employed ligand-and structure-based approaches to identify the potent inhibitors of 2019-nCoV protease. The e-pharmacophore developed from 3CLpro-1 yielded virtual hits, that were subjected through drug likeliness and PAINS filters to remove interfering compounds. Further comprehensive docking studies, free energy calculations and ADMET studies resulted in two virtual leads-MolPort-000-410-348 and MolPort-002-530-156. The compounds MolPort-000-410-348 and MolPort-002-530-156 displayed good docking score of À12.09 and À13.38 Kcal/mol and free binding energy of À63.34 ± 2.03 and À61.52 ± 2.24 Kcal/ mol, respectively. The compounds also exhibited satisfactory predicted ADMET profile and were subjected to molecular dynamic (MD) studies. The MD simulation produced stable complexes of these ligands with 3CLpro protein and ligand RMSD in acceptable limits.
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Cyclin-dependent kinases (CDKs) is a group of multifunctional enzymes consisting of catalytic and regulatory
subunits. The regulatory subunit, cyclin remain dissociated under normal circumstances, complexation of cyclin with the
catalytic subunit of CDK leads to its activation for phosphorylation of protein substrates. The primary role of CDKs is in
the regulation of the cell cycle. Retinoblastoma protein (Rb) is one of the widely investigated tumor suppressor protein
substrate of CDK, which prevent cells from entering into cell-cycle under normal conditions. Phosphorylation of Rb by
CDKs causes its inactivation and ultimately allows cells to enter a new cell cycle. Many cancers are associated with
hyperactivation of CDKs as a result of mutation of the CDK genes or CDK inhibitor genes. Therefore, CDK modulators
are of great interest to explore as novel therapeutic agents against cancer and led to the discovery of several CDK
inhibitors to clinics. This review focuses on the current progress and development of anti-cancer CDK inhibitors from
preclinical to clinical and synthetic to natural small molecules.
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