Information-theoretic analysis of a model of CAR-4-1BB-mediated NFκB activation

Vardges Tserunyan1, Stacey Finley1,2,3

  • 1Department of Quantitative and Computational Biology, University of Southern California, Los Angeles, CA, USA.

Insights

Information theory reveals how CAR T-cell signaling accurately transmits antigen concentration. Enhancing NFκB signaling improves cancer therapy efficacy.

Area of Science:

  • Systems biology and computational approaches applied to cellular signaling.
  • Immunotherapy, specifically Chimeric Antigen Receptor (CAR) T-cell therapy for cancer.

Background:

  • CAR T-cell therapy shows promise in hematologic malignancies but faces limitations in other cancer types.
  • Understanding CAR T-cell signaling mechanisms is crucial for improving therapeutic potential and efficacy.

Approach:

  • Utilized information theory to analyze a mathematical model of CAR-mediated cell signaling.
  • Estimated channel capacity for CAR-4-1BB-mediated NFκB signal transduction.
  • Evaluated pathway's ability to distinguish antigen concentrations and assessed signaling fidelity.

Key Points:

  • Fold change in nuclear NFκB concentration offers higher channel capacity than absolute response.
  • Signaling errors predominantly lead to underestimation of antigen concentration.
  • Disabling IKKβ deactivation can enhance signaling fidelity, especially with antigen-negative cells.

Conclusions:

  • Information-theoretic analysis provides novel insights into biological signal transduction.
  • Findings enable a more informed approach to CAR T-cell engineering for improved cancer therapy.

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