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Exploiting synthetic lethality for the therapy of ABC diffuse large B cell lymphoma.

Yibin Yang | Arthur L Shaffer | N C Tolga Emre | Michele Ceribelli | Meili Zhang | George Wright | Wenming Xiao | John Powell | John Platig | Holger Kohlhammer | Ryan M Young | Hong Zhao | Yandan Yang | Weihong Xu | Joseph J Buggy | Sriram Balasubramanian | Lesley A Mathews | Paul Shinn | Rajarshi Guha | Marc Ferrer | Craig Thomas | Thomas A Waldmann | Louis M Staudt
Cancer cell | 2012

Knowledge of oncogenic mutations can inspire therapeutic strategies that are synthetically lethal, affecting cancer cells while sparing normal cells. Lenalidomide is an active agent in the activated B cell-like (ABC) subtype of diffuse large B cell lymphoma (DLBCL), but its mechanism of action is unknown. Lenalidomide kills ABC DLBCL cells by augmenting interferon β (IFNβ) production, owing to the oncogenic MYD88 mutations in these lymphomas. In a cereblon-dependent fashion, lenalidomide downregulates IRF4 and SPIB, transcription factors that together prevent IFNβ production by repressing IRF7 and amplify prosurvival NF-κB signaling by transactivating CARD11. Blockade of B cell receptor signaling using the BTK inhibitor ibrutinib also downregulates IRF4 and consequently synergizes with lenalidomide in killing ABC DLBCLs, suggesting attractive therapeutic strategies.

Pubmed ID: 22698399

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Associated grants

  • Agency: Intramural NIH HHS, United States
    Id: ZIA BC011007-06
  • Agency: Intramural NIH HHS, United States
    Id: ZIA BC011008-06

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