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Molecular Cancer Therapeutics
Molecular Cancer Therapeutics
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Small-molecule inhibitor of USP7/HAUSP ubiquitin protease stabilizes and activates p53 in cells

Frédéric Colland, Etienne Formstecher, Xavier Jacq, Céline Reverdy, Cécile Planquette, Susan Conrath, Virginie Trouplin, Julie Bianchi, Vasily N. Aushev, Jacques Camonis, Alessandra Calabrese, Catherine Borg-Capra, Wolfgang Sippl, Vincent Collura, Guillaume Boissy, Jean-Christophe Rain, Philippe Guedat, Rémi Delansorne and Laurent Daviet
Frédéric Colland
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Etienne Formstecher
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Xavier Jacq
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Céline Reverdy
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Cécile Planquette
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Susan Conrath
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Virginie Trouplin
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Julie Bianchi
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Vasily N. Aushev
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Jacques Camonis
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Alessandra Calabrese
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Catherine Borg-Capra
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Wolfgang Sippl
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Vincent Collura
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Guillaume Boissy
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Jean-Christophe Rain
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Philippe Guedat
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Rémi Delansorne
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Laurent Daviet
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DOI: 10.1158/1535-7163.MCT-09-0097 Published August 2009
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Abstract

Deregulation of the ubiquitin/proteasome system has been implicated in the pathogenesis of many human diseases, including cancer. Ubiquitin-specific proteases (USP) are cysteine proteases involved in the deubiquitination of protein substrates. Functional connections between USP7 and essential viral proteins and oncogenic pathways, such as the p53/Mdm2 and phosphatidylinositol 3-kinase/protein kinase B networks, strongly suggest that the targeting of USP7 with small-molecule inhibitors may be useful for the treatment of cancers and viral diseases. Using high-throughput screening, we have discovered HBX 41,108, a small-molecule compound that inhibits USP7 deubiquitinating activity with an IC50 in the submicromolar range. Kinetics data indicate an uncompetitive reversible inhibition mechanism. HBX 41,108 was shown to affect USP7-mediated p53 deubiquitination in vitro and in cells. As RNA interference-mediated USP7 silencing in cancer cells, HBX 41,108 treatment stabilized p53, activated the transcription of a p53 target gene without inducing genotoxic stress, and inhibited cancer cell growth. Finally, HBX 41,108 induced p53-dependent apoptosis as shown in p53 wild-type and null isogenic cancer cell lines. We thus report the identification of the first lead-like inhibitor against USP7, providing a structural basis for the development of new anticancer drugs.[Mol Cancer Ther 2009;8(8):2286–95]

  • USP7
  • inhibitor
  • cancer
  • p53
  • HBX 41,108
  • apoptosis

Footnotes

  • Grant support: Association de Recherche sur le Cancer (grant 3131) and Association Christelle Bouillot (J. Camonis) and Ministère Français des Affaires Etrangères fellowship (V.N. Aushev).

  • Note: Supplementary material for this article is available at Molecular Cancer Therapeutics Online (http://mct.aacrjournals.org/).

  • The costs of publication of this article were defrayed in part by the payment of page charges. This article must therefore be hereby marked advertisement in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.

    • Received February 4, 2009.
    • Revision received May 15, 2009.
    • Accepted May 15, 2009.
  • © 2009 American Association for Cancer Research.
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Molecular Cancer Therapeutics: 8 (8)
August 2009
Volume 8, Issue 8
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Small-molecule inhibitor of USP7/HAUSP ubiquitin protease stabilizes and activates p53 in cells
Frédéric Colland, Etienne Formstecher, Xavier Jacq, Céline Reverdy, Cécile Planquette, Susan Conrath, Virginie Trouplin, Julie Bianchi, Vasily N. Aushev, Jacques Camonis, Alessandra Calabrese, Catherine Borg-Capra, Wolfgang Sippl, Vincent Collura, Guillaume Boissy, Jean-Christophe Rain, Philippe Guedat, Rémi Delansorne and Laurent Daviet
Mol Cancer Ther August 1 2009 (8) (8) 2286-2295; DOI: 10.1158/1535-7163.MCT-09-0097

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Small-molecule inhibitor of USP7/HAUSP ubiquitin protease stabilizes and activates p53 in cells
Frédéric Colland, Etienne Formstecher, Xavier Jacq, Céline Reverdy, Cécile Planquette, Susan Conrath, Virginie Trouplin, Julie Bianchi, Vasily N. Aushev, Jacques Camonis, Alessandra Calabrese, Catherine Borg-Capra, Wolfgang Sippl, Vincent Collura, Guillaume Boissy, Jean-Christophe Rain, Philippe Guedat, Rémi Delansorne and Laurent Daviet
Mol Cancer Ther August 1 2009 (8) (8) 2286-2295; DOI: 10.1158/1535-7163.MCT-09-0097
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Molecular Cancer Therapeutics
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