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Novel Fas-TNFR chimeras that prevent Fas ligand-mediated kill and signal synergistically to enhance CAR T cell efficacy.
McKenzie, Callum; El-Kholy, Mohamed; Parekh, Farhaan; Robson, Mathew; Lamb, Katarina; Allen, Christopher; Sillibourne, James; Cordoba, Shaun; Thomas, Simon; Pule, Martin.
Affiliation
  • McKenzie C; Autolus Therapeutics, London W12 7FP, UK.
  • El-Kholy M; Autolus Therapeutics, London W12 7FP, UK.
  • Parekh F; Autolus Therapeutics, London W12 7FP, UK.
  • Robson M; Autolus Therapeutics, London W12 7FP, UK.
  • Lamb K; Autolus Therapeutics, London W12 7FP, UK.
  • Allen C; Autolus Therapeutics, London W12 7FP, UK.
  • Sillibourne J; Autolus Therapeutics, London W12 7FP, UK.
  • Cordoba S; Autolus Therapeutics, London W12 7FP, UK.
  • Thomas S; Autolus Therapeutics, London W12 7FP, UK.
  • Pule M; Autolus Therapeutics, London W12 7FP, UK.
Mol Ther Nucleic Acids ; 32: 603-621, 2023 Jun 13.
Article in En | MEDLINE | ID: mdl-37200859
ABSTRACT
The hostile tumor microenvironment limits the efficacy of adoptive cell therapies. Activation of the Fas death receptor initiates apoptosis and disrupting these receptors could be key to increasing CARcell efficacy. We screened a library of Fas-TNFR proteins identifying several novel chimeras that not only prevented Fas ligand-mediated kill, but also enhanced CARcell efficacy by signaling synergistically with the CAR. Upon binding Fas ligand, Fas-CD40 activated the NF-κB pathway, inducing greatest proliferation and IFN-γ release out of all Fas-TNFRs tested. Fas-CD40 induced profound transcriptional modifications, particularly genes relating to the cell cycle, metabolism, and chemokine signaling. Co-expression of Fas-CD40 with either 4-1BB- or CD28-containing CARs increased in vitro efficacy by augmenting CARcell proliferation and cancer target cytotoxicity, and enhanced tumor killing and overall mouse survival in vivo. Functional activity of the Fas-TNFRs were dependent on the co-stimulatory domain within the CAR, highlighting crosstalk between signaling pathways. Furthermore, we show that a major source for Fas-TNFR activation derives from CARcells themselves via activation-induced Fas ligand upregulation, highlighting a universal role of Fas-TNFRs in augmenting CARcell responses. We have identified Fas-CD40 as the optimal chimera for overcoming Fas ligand-mediated kill and enhancing CARcell efficacy.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Mol Ther Nucleic Acids Year: 2023 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Mol Ther Nucleic Acids Year: 2023 Document type: Article Affiliation country:
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