bioRxiv · 10.1101/2022.04.27.489659
Computational analysis of 4-1BB-induced NF κB signaling suggests improvements to CAR cell design
Abstract
BackgroundChimeric antigen receptor (CAR)-expressing cells are a powerful modality of adoptive cell therapy against cancer. The strength and dynamics of signaling events initiated upon antigen binding depend on the costimulatory domain within the structure of the CAR. One such costimulatory domain is 4-1BB, which affects cellular response via the NF{kappa}B pathway. However, the quantitative aspects of 4-1BB-induced NF{kappa}B signaling are not fully understood. MethodsWe developed an ordinary differential equation-based mathematical model representing canonical NF{kappa}B signaling activated by CAR-4-1BB. We first performed a global sensitivity analysis on our model to quantify the impact of kinetic parameters and initial protein concentrations. We ran Monte Carlo simulations of cell population-wide variability in NF{kappa}B signaling and used Kraskovs algorithm to quantify the mutual information between the extracellular signal and different levels of the NF{kappa}B signal transduction pathway. ResultsWe determined that in response to a wide range of antigen concentrations, the magnitude of the transient peak in the nuclear concentration of NF{kappa}B varies significantly, while the timing of this peak is relatively consistent. Our global sensitivity analysis showed that the model is robust to variations in parameter values, and thus, its quantitative predictions would remain applicable to a broad range of parameter values. Next, we found that overexpressing NEMO and disabling IKK{beta} deactivation are predicted to increase the mutual information between antigen levels and NF{kappa}B activation. ConclusionsOur modeling predictions provide actionable insights to guide CAR development. Particularly, we propose specific manipulations to the NF{kappa}B signal transduction pathway that can fine-tune the response of CAR-4-1BB cells to the antigen concentrations they are likely to encounter.
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Tserunyan, V., Finley, S. D.. 2022-04-27. Computational analysis of 4-1BB-induced NF κB signaling suggests improvements to CAR cell design. https://doi.org/10.1101/2022.04.27.489659
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