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Targeting the Cbl-b-Notch1 axis as a novel immunotherapeutic strategy to boost CD8+ T-cell responses

  • Giulia Monticone
  • , Zhi Huang
  • , Fred Csibi
  • , Silvana Leit
  • , David Ciccone
  • , Ameya S. Champhekar
  • , Jermaine E. Austin
  • , Deniz A. Ucar
  • , Fokhrul Hossain
  • , Salome V. Ibba
  • , A. Hamid Boulares
  • , Nicholas Carpino
  • , Keli Xu
  • , Samarpan Majumder
  • , Barbara A. Osborne
  • , Christine Loh
  • , Lucio Miele
  • Louisiana State University Health Sciences Center
  • Nimbus Therapeutics
  • University of California at Los Angeles
  • University of Virginia
  • University of Mississippi
  • University of Massachusetts

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

A critical feature of cancer is the ability to induce immunosuppression and evade immune responses. Tumor-induced immunosuppression diminishes the effectiveness of endogenous immune responses and decreases the efficacy of cancer immunotherapy. In this study, we describe a new immunosuppressive pathway in which adenosine promotes Casitas B-lineage lymphoma b (Cbl-b)-mediated Notch1 degradation, causing suppression of CD8+ T-cells effector functions. Genetic knockout and pharmacological inhibition of Cbl-b prevents Notch1 degradation in response to adenosine and reactivates its signaling. Reactivation of Notch1 results in enhanced CD8+ T-cell effector functions, anti-cancer response and resistance to immunosuppression. Our work provides evidence that targeting the Cbl-b-Notch1 axis is a novel promising strategy for cancer immunotherapy.

Original languageEnglish
Article number987298
JournalFrontiers in Immunology
Volume13
DOIs
StatePublished - Aug 26 2022

Keywords

  • Cbl-b
  • Notch1
  • adenosine
  • immunosuppression
  • immunotherapy

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