Abstract

BackgroundNuclear factor kappa B (NF-κB) is a chief nuclear transcription factor that controls the transcription of various genes; and its activation is tightly controlled by Inhibitor kappa B kinase (IKK). The irregular transcription of NF-κB has been linked to auto-immune disorders, cancer and other diseases. The IKK complex is composed of three units, IKKα, IKKβ, and the regulatory domain NEMO, of which IKKβ is well understood in the canonical pathway. Therefore, the inhibition of IKKβ by drugs forms the molecular basis for anti-inflammatory drug research.ResultsThe ligand- and structure-based virtual screening (VS) technique has been applied to identify IKKβ inhibitors from the ChemDiv database with 0.7 million compounds. Initially, a 3D-QSAR pharmacophore model has been deployed to greatly reduce the database size. Subsequently, recursive partitioning (RP) and docking filters were used to screen the pharmacophore hits. Finally, 29 compounds were selected for IKKβ enzyme inhibition assay to identify a novel small molecule inhibitor of IKKβ protein.ConclusionsIn the present investigation, we have applied various computational models sequentially to virtually screen the ChemDiv database, and identified a small molecule that has an IC50 value of 20.3μM. This compound is novel among the known IKKβ inhibitors. Further optimization of the hit compound can reveal a more potent anti-inflammatory agent.

Highlights

  • Nuclear factor kappa B (NF-B) is a chief nuclear transcription factor that controls the transcription of various genes; and its activation is tightly controlled by Inhibitor kappa B kinase (IKK)

  • Inhibitor kappa-B kinaseb (IKKb) is a serine-threonine protein kinase, which is critically involved in the activation of transcription factor Nuclear Factor kappa B (NFB) in response to various inflammatory stimuli [1]

  • The IKK complex comprises two catalytic subunits, IKKa and IKKb, and a regulatory subunit, IKKg. Both the catalytic subunits can catalyze the phosphorylation of IBa, the IKKb subunit seems to play a dominant role in the canonical pathway

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Summary

Results

The ligand- and structure-based virtual screening (VS) technique has been applied to identify IKKb inhibitors from the ChemDiv database with 0.7 million compounds. A 3D-QSAR pharmacophore model has been deployed to greatly reduce the database size. Recursive partitioning (RP) and docking filters were used to screen the pharmacophore hits. 29 compounds were selected for IKKb enzyme inhibition assay to identify a novel small molecule inhibitor of IKKb protein

Conclusions
Background
Results and discussions
Conclusion
Methods
39. Liao JJL
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