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CAR-engineered lymphocyte persistence is governed by a FAS ligand/FAS auto-regulatory circuit

Yi, F.; Cohen, T.; Zimmerman, N.; Dundar, F. A.; Zumbo, P.; Eltilib, R.; Brophy, E. J.; Arkin, H.; Feucht, J.; Gormally, M. V.; Hackett, C. S.; Kropp, K. N.; Etxeberria, I.; Chandran, S. S.; Park, J. H.; Hsu, K. C.; Sadelain, M.; Betel, D.; Klebanoff, C. A.

2024-03-01 immunology
10.1101/2024.02.26.582108 bioRxiv
Show abstract

Chimeric antigen receptor (CAR)-engineered T and NK cells can cause durable remission of B-cell malignancies; however, limited persistence restrains the full potential of these therapies in many patients. The FAS ligand (FAS-L)/FAS pathway governs naturally-occurring lymphocyte homeostasis, yet knowledge of which cells express FAS-L in patients and whether these sources compromise CAR persistence remains incomplete. Here, we constructed a single-cell atlas of diverse cancer types to identify cellular subsets expressing FASLG, the gene encoding FAS-L. We discovered that FASLG is limited primarily to endogenous T cells, NK cells, and CAR-T cells while tumor and stromal cells express minimal FASLG. To establish whether CAR-T/NK cell survival is regulated through FAS-L, we performed competitive fitness assays using lymphocytes modified with or without a FAS dominant negative receptor ({Delta}FAS). Following adoptive transfer, {Delta}FAS-expressing CAR-T and CAR-NK cells became enriched across multiple tissues, a phenomenon that mechanistically was reverted through FASLG knockout. By contrast, FASLG was dispensable for CAR-mediated tumor killing. In multiple models, {Delta}FAS co-expression by CAR-T and CAR-NK enhanced antitumor efficacy compared with CAR cells alone. Together, these findings reveal that CAR-engineered lymphocyte persistence is governed by a FAS-L/FAS auto-regulatory circuit.

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