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Updated: Aug 12, 2026

A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
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.
Abstract:
The aurora kinases are a novel oncogenic family of mitotic serine/threonine kinases (S/T kinases) that are overexpressed in a number of solid tumors, including pancreas and colorectal cancer. A PSI-BLAST search [National Center for Biotechnology Information (NCBI)] with the sequence of the S/T kinase domain of human aurora1 kinase [also known as AUR1, ARK2, AIk2, AIM-1, and STK12] and human aurora2 kinase (also known as AUR2, ARK1, AIK, BTAK, and STK15) showed a high sequence similarity to the three-dimensional structures of bovine cAMP-dependent kinase [Brookhaven Protein Data Bank code 1CDK], murine cAMP-dependent kinase (1APM), and Caenorhabditis elegans twitchin kinase (1KOA). When the aurora1 or aurora2 sequence was input into the tertiary structure prediction programs THREADER and 3D-PSSM (three-dimensional position-sensitive scoring matrix), the top structural matches were 1CDK, 1APM, and 1KOA, confirming that these domains are structurally conserved. The structural models of aurora1 and aurora2 were built using 1CDK as the template structure. Molecular dynamics and docking simulations, targeting the ATP binding site of aurora2 with adenylyl imidodiphosphate (AMP-PNP), staurosporine, and six small molecular S/T kinase inhibitors, identified active-site residues that interact with these inhibitors differentially. The docked structures of the aurora2-AMP-PNP and aurora2-staurosporine complexes indicated that the adenine ring of AMP-PNP and the indolocarbazole moiety of staurosporine have similar positions and orientations and provided the basis for the docking of the other S/T kinase inhibitors. Inhibitors with isoquinoline and quinazoline moieties were recognized by aurora2 in which H-89 and 6,7-dimethoxyquinazoline compounds exhibited high binding energies compared with that of staurosporine. The calculated binding energies for the docked small-molecule inhibitors were qualitatively consistent with the IC(50) values generated using an in vitro kinase assay. The aurora2 structural model provides a rational basis for site-directed mutagenesis of the active site; design of novel H-89, staurosporine, and quinazoline analogues; and the screening of the available chemical database for the identification of other novel, small-molecular entities.
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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