K. Bresser, Z. Hozjan, N. H. Servaas, S. Stelloo, C. G. Spruijt, M. Nestor Martin, A. Guislain, N. Kanagasabesan, S. Kneefel, A. J. Hoogendijk, C. van der Zwaan, Z. Moravec, R. Voogd, M. Nieuwland, J. Sieljes, R. van Es, K. Monkhorst, K. Hartemink, W. S. Theelen, W. Scheper, M. Vermeulen, M. C. Wolkers
CD8+ T cells in solid cancers progressively lose anti-tumor activity, yet the cell-intrinsic mechanisms driving this loss of function remain incompletely defined. Here, we performed matched proteomic and transcriptomic profiling of dysfunctional and bystander CD8+ tumor-infiltrating T cells isolated from primary tumors of treatment-naive non-small cell lung cancer patients. Proteomic analysis revealed widespread discordance with mRNA expression, with 8% of all quantified proteins displaying differential expression exclusively at the protein level. Genetic perturbation of such differentially expressed proteins identified the chromatin remodeler CHD4 and fatty acid synthase (FASN) as cell-intrinsic regulators of T cell function. CHD4 deletion resulted in altered gene-regulatory networks that promoted effector differentiation and enhanced cytokine production. In contrast, FASN deletion preserved mitochondrial fitness and sustained T cell functionality under chronic T cell receptor stimulation. Together, these findings demonstrate that proteomic profiling uncovers regulators of T cell functionality that are not apparent from transcriptomic analyses alone, highlighting an additional layer of regulatory control.