Allosteric Inhibition of Bcr-Abl Kinase by High Affinity Monobody Inhibitors Directed to the Src Homology 2 (SH2)-Kinase Interface
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Published version
Author(s)
Type
Journal Article
Abstract
Bcr-Abl is a constitutively active kinase that causes chronic myelogenous leukemia. We have shown that a tandem fusion of two designed binding proteins, termed monobodies, directed to the interaction interface between the Src homology 2 (SH2) and kinase domains and to the phosphotyrosine-binding site of the SH2 domain, respectively, inhibits the Bcr-Abl kinase activity. Because the latter monobody inhibits processive phosphorylation by Bcr-Abl and the SH2-kinase interface is occluded in the active kinase, it remained undetermined whether targeting the SH2-kinase interface alone was sufficient for Bcr-Abl inhibition. To address this question, we generated new, higher affinity monobodies with single nanomolar KD values targeting the kinase-binding surface of SH2. Structural and mutagenesis studies revealed the molecular underpinnings of the monobody-SH2 interactions. Importantly, the new monobodies inhibited Bcr-Abl kinase activity in vitro and in cells, and they potently induced cell death in chronic myelogenous leukemia cell lines. This work provides strong evidence for the SH2-kinase interface as a pharmacologically tractable site for allosteric inhibition of Bcr-Abl.
Date Issued
2016-04-15
Date Acceptance
2016-02-01
Citation
Journal of Biological Chemistry, 2016, 291 (16), pp.8836-8847
ISSN
0021-9258
Publisher
American Society for Biochemistry and Molecular Biology
Start Page
8836
End Page
8847
Journal / Book Title
Journal of Biological Chemistry
Volume
291
Issue
16
Copyright Statement
© 2016 The American Society for Biochemistry and Molecular Biology, Inc. This research was originally published in The Journal of Biological Chemistry
291, 8836-8847.
291, 8836-8847.
Subjects
06 Biological Sciences
11 Medical And Health Sciences
03 Chemical Sciences
Biochemistry & Molecular Biology
Publication Status
Published
Date Publish Online
2016-02-24