Skip to main navigation Skip to search Skip to main content

c-Src Binds to the Cancer Drug Imatinib with an Inactive Abl/c-Kit Conformation and a Distributed Thermodynamic Penalty

  • Markus A. Seeliger
  • , Bhushan Nagar
  • , Filipp Frank
  • , Xiaoxian Cao
  • , M. Nidanie Henderson
  • , John Kuriyan
  • University of California at Berkeley
  • Lawrence Berkeley National Laboratory

Research output: Contribution to journalArticlepeer-review

203 Scopus citations

Abstract

The cancer drug imatinib inhibits the tyrosine kinases c-Abl, c-Kit, and the PDGF receptor. Imatinib is less effective against c-Src, which is difficult to understand because residues interacting with imatinib in crystal structures of Abl and c-Kit are conserved in c-Src. The crystal structure of the c-Src kinase domain in complex with imatinib closely resembles that of Abl•imatinib and c-Kit•imatinib, and differs significantly from the inactive "Src/CDK" conformation of the Src family kinases. Attempts to increase the affinity of c-Src for imatinib by swapping residues with the corresponding residues in Abl have not been successful, suggesting that the thermodynamic penalty for adoption of the imatinib-binding conformation by c-Src is distributed over a broad region of the structure. Two mutations that are expected to destabilize the inactive Src/CDK conformation increase drug sensitivity 15-fold, suggesting that the free-energy balance between different inactive states is a key to imatinib binding.

Original languageEnglish
Pages (from-to)299-311
Number of pages13
JournalStructure
Volume15
Issue number3
DOIs
StatePublished - Mar 2007

Keywords

  • CELLCYCLE
  • SIGNALING

Fingerprint

Dive into the research topics of 'c-Src Binds to the Cancer Drug Imatinib with an Inactive Abl/c-Kit Conformation and a Distributed Thermodynamic Penalty'. Together they form a unique fingerprint.

Cite this