The Structure of Dasatinib (BMS-354825) Bound to Activated ABL Kinase Domain Elucidates Its Inhibitory Activity against Imatinib-Resistant ABL Mutants

Author:

Tokarski John S.1,Newitt John A.1,Chang Chieh Ying J.1,Cheng Janet D.1,Wittekind Michael1,Kiefer Susan E.1,Kish Kevin1,Lee Francis Y.F.1,Borzillerri Robert1,Lombardo Louis J.1,Xie Dianlin1,Zhang Yaqun1,Klei Herbert E.1

Affiliation:

1. Bristol-Myers Squibb Company, Pharmaceutical Research Institute, Princeton, New Jersey

Abstract

Abstract Chronic myeloid leukemia (CML) is caused by the constitutively activated tyrosine kinase breakpoint cluster (BCR)-ABL. Current frontline therapy for CML is imatinib, an inhibitor of BCR-ABL. Although imatinib has a high rate of clinical success in early phase CML, treatment resistance is problematic, particularly in later stages of the disease, and is frequently mediated by mutations in BCR-ABL. Dasatinib (BMS-354825) is a multitargeted tyrosine kinase inhibitor that targets oncogenic pathways and is a more potent inhibitor than imatinib against wild-type BCR-ABL. It has also shown preclinical activity against all but one of the imatinib-resistant BCR-ABL mutants tested to date. Analysis of the crystal structure of dasatinib-bound ABL kinase suggests that the increased binding affinity of dasatinib over imatinib is at least partially due to its ability to recognize multiple states of BCR-ABL. The structure also provides an explanation for the activity of dasatinib against imatinib-resistant BCR-ABL mutants. (Cancer Res 2006; 66(11): 5790-7)

Publisher

American Association for Cancer Research (AACR)

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