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Research Article

Structure-based discovery of an organic compound that binds Bcl-2 protein and induces apoptosis of tumor cells

Jia-Lun Wang, Dongxiang Liu, Zhi-Jia Zhang, Simei Shan, Xiaobing Han, Srinivasa M. Srinivasula, Carlo M. Croce, Emad S. Alnemri, and Ziwei Huang
PNAS June 20, 2000 97 (13) 7124-7129; https://doi.org/10.1073/pnas.97.13.7124
Jia-Lun Wang
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Dongxiang Liu
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Zhi-Jia Zhang
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Simei Shan
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Xiaobing Han
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Srinivasa M. Srinivasula
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Carlo M. Croce
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Emad S. Alnemri
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Ziwei Huang
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  1. Contributed by Carlo M. Croce

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Abstract

Bcl-2 and related proteins are key regulators of apoptosis or programmed cell death implicated in human disease including cancer. We recently showed that cell-permeable Bcl-2 binding peptides could induce apoptosis of human myeloid leukemia in vitro and suppress its growth in severe combined immunodeficient mice. Here we report the discovery of HA14-1, a small molecule (molecular weight = 409) and nonpeptidic ligand of a Bcl-2 surface pocket, by using a computer screening strategy based on the predicted structure of Bcl-2 protein. In vitro binding studies demonstrated the interaction of HA14-1 with this Bcl-2 surface pocket that is essential for Bcl-2 biological function. HA14-1 effectively induced apoptosis of human acute myeloid leukemia (HL-60) cells overexpressing Bcl-2 protein that was associated with the decrease in mitochondrial membrane potential and activation of caspase-9 followed by caspase-3. Cytokine response modifier A, a potent inhibitor of Fas-mediated apoptosis, did not block apoptosis induced by HA14-1. Whereas HA14-1 strongly induced the death of NIH 3T3 (Apaf-1+/+) cells, it had little apoptotic effect on Apaf-1-deficient (Apaf-1−/−) mouse embryonic fibroblast cells. These data are consistent with a mechanism by which HA14-1 induces the activation of Apaf-1 and caspases, possibly by binding to Bcl-2 protein and inhibiting its function. The discovery of this cell-permeable molecule provides a chemical probe to study Bcl-2-regulated apoptotic pathways in vivo and could lead to the development of new therapeutic agents.

Footnotes

    • ↵* J.-L.W., D.L., and Z.-J.Z. contributed equally to this work.

    • ↵† To whom reprint requests should be addressed. E-mail: zhuang{at}nana.jci.tju.edu.

  • Abbreviations

    BH domain,
    Bcl homology domain;
    CrmA,
    cytokine response modifier A;
    PARP,
    poly(ADP-ribose)-polymerase
    • Accepted April 18, 2000.
    • Copyright © 2000, The National Academy of Sciences
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    Structure-based discovery of an organic compound that binds Bcl-2 protein and induces apoptosis of tumor cells
    Jia-Lun Wang, Dongxiang Liu, Zhi-Jia Zhang, Simei Shan, Xiaobing Han, Srinivasa M. Srinivasula, Carlo M. Croce, Emad S. Alnemri, Ziwei Huang
    Proceedings of the National Academy of Sciences Jun 2000, 97 (13) 7124-7129; DOI: 10.1073/pnas.97.13.7124

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    Structure-based discovery of an organic compound that binds Bcl-2 protein and induces apoptosis of tumor cells
    Jia-Lun Wang, Dongxiang Liu, Zhi-Jia Zhang, Simei Shan, Xiaobing Han, Srinivasa M. Srinivasula, Carlo M. Croce, Emad S. Alnemri, Ziwei Huang
    Proceedings of the National Academy of Sciences Jun 2000, 97 (13) 7124-7129; DOI: 10.1073/pnas.97.13.7124
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