Targeting the disordered C terminus of PTP1B with an allosteric inhibitor

被引:0
|
作者
Krishnan N. [1 ]
Koveal D. [2 ]
Miller D.H. [3 ,4 ]
Xue B. [1 ,7 ]
Akshinthala S.D. [1 ]
Kragelj J. [5 ]
Jensen M.R. [5 ]
Gauss C.-M. [1 ]
Page R. [2 ]
Blackledge M. [5 ]
Muthuswamy S.K. [1 ,6 ]
Peti W. [3 ,4 ]
Tonks N.K. [1 ]
机构
[1] Cold Spring Harbor Laboratory, Cold Spring Harbor, NY
[2] Department of Molecular Biology, Cell Biology and Biochemistry, Brown University, Providence, RI
[3] Department of Molecular Pharmacology, Physiology and Biotechnology, Brown University, Providence, RI
[4] Department of Chemistry, Brown University, Providence, RI
[5] Protein Dynamics and Flexibility, Institut de Biologie Structurale Jean-Pierre Ebel, CNRS, Grenoble
[6] Department of Medical Biophysics, Ontario Cancer Institute, University of Toronto, Toronto
[7] Department of Molecular and Cell Biology, University of California-Berkeley, Berkeley, CA
基金
美国国家卫生研究院;
关键词
D O I
10.1038/nchembio.1528
中图分类号
学科分类号
摘要
PTP1B, a validated therapeutic target for diabetes and obesity, has a critical positive role in HER2 signaling in breast tumorigenesis. Efforts to develop therapeutic inhibitors of PTP1B have been frustrated by the chemical properties of the active site. We define a new mechanism of allosteric inhibition that targets the C-terminal, noncatalytic segment of PTP1B. We present what is to our knowledge the first ensemble structure of PTP1B containing this intrinsically disordered segment, within which we identified a binding site for the small-molecule inhibitor MSI-1436. We demonstrate binding to a second site close to the catalytic domain, with cooperative effects between the two sites locking PTP1B in an inactive state. MSI-1436 antagonized HER2 signaling, inhibited tumorigenesis in xenografts and abrogated metastasis in the NDL2 mouse model of breast cancer, validating inhibition of PTP1B as a therapeutic strategy in breast cancer. This new approach to inhibition of PTP1B emphasizes the potential of disordered segments of proteins as specific binding sites for therapeutic small molecules. © 2014 Nature America, Inc.
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页码:558 / 566
页数:8
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