Targeting aurora2 kinase in oncogenesis: a structural bioinformatics approach to target validation and rational drug

Hariprasad Vankayalapati1, David J Bearss, José W Saldanha

  • 1Arizona Cancer Center, University of Arizona, Tucson, Arizona 85724, USA.

Insights

Aurora kinases are oncogenic mitotic serine/threonine kinases overexpressed in solid tumors. Structural modeling and molecular dynamics simulations revealed key active-site interactions with kinase inhibitors, aiding in the design of novel cancer therapeutics.

Area of Science:

  • Biochemistry and Molecular Biology
  • Structural Biology
  • Cancer Biology

Background:

  • Aurora kinases (AUR1, AUR2) are serine/threonine kinases implicated in oncogenesis and overexpressed in solid tumors like pancreatic and colorectal cancer.
  • Sequence similarity searches revealed structural conservation with known kinases, suggesting conserved three-dimensional structures.

Purpose of the Study:

  • To elucidate the structural basis of aurora kinase activity and inhibitor binding.
  • To provide a foundation for the rational design of novel aurora kinase inhibitors for cancer therapy.

Main Methods:

  • PSI-BLAST searches and tertiary structure prediction (THREADER, 3D-PSSM) were used to determine structural homology.
  • Structural models of aurora1 and aurora2 were built using cAMP-dependent kinase (1CDK) as a template.
  • Molecular dynamics and docking simulations were performed using various small molecular inhibitors targeting the ATP binding site of aurora2.

Main Results:

  • Structural models confirmed conserved kinase domains, with aurora1 and aurora2 models built using 1CDK.
  • Docking simulations identified differential interactions of active-site residues with inhibitors like AMP-PNP and staurosporine.
  • Inhibitors containing isoquinoline and quinazoline moieties, such as H-89 and 6,7-dimethoxyquinazoline, showed high binding energies, consistent with in vitro kinase assay data.

Conclusions:

  • The structural model of aurora2 provides a rational basis for site-directed mutagenesis and the design of novel kinase inhibitors.
  • This study facilitates the identification of new small-molecule entities targeting aurora kinases for cancer treatment.

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