The CARD11-BCL10-MALT1 (CBM) Complex Regulates Nutrient Transport and mTORC1 Activation to Shape CD4+ T Cell Differentiation 2252439

A Allison Ruchinskas (Henry M. Jackson Fndn. for the Advancement of Mil. Med) B Bradly Bauman (Yale University) M Melissa Kallarakal (Uniformed Services University of the Health Sciences) J Joshua Milner (Columbia University) V Vincent Petit M Marc Sitbon (Metafora Biosystems) N Naomi Taylor A Andrew Snow (Uniformed Services University of the Health Sciences)

Abstract

Abstract Introduction The precise mechanisms linking TCR-dependent nutrient import and metabolic reprogramming to CD4+ T helper (Th) fate and function remain elusive. We recently demonstrated that the CBM complex facilitates TCR-induced expression of the glutamine transporter ASCT2 and the glucose transporter GLUT1 on human CD4+ T cells. Notably, patient T cells carrying deleterious dominant-negative (DN) CARD11 mutations exhibit impaired activation-induced upregulation of both transporters, which we hypothesize contributes to the abnormal Th2 skewing and severe atopy observed in this cohort. Methods To test if observed phenotypes resulted from decreased nutrient transport, we employed siRNA-mediated knockdown and pharmacological inhibition of ASCT2/GLUT1 in primary human T cells. Nutrient uptake and mTORC1 function were quantified in healthy and CARD11 DN samples using QUAS-R/2-NBDG import assays, flow cytometry, and immunoblotting. Th differentiation was assessed by spectral flow cytometry and high-sensitivity electrochemiluminescent immunoassays. Results Targeted disruption of ASCT2 and GLUT1 reduced glutamine and glucose import respectively and decreased mTORC1 activity, including protein translation. These defects were linked to MALT1 protease function and sustained by reduced nutrient import. Consequently, we observed reduced production of IFNγ and augmented secretion of Th2 (IL-4) and Tfh (IL-21) cytokines consistent with nutrient-dependent shifts in lineage-defining transcription factors, mirroring programs in CARD11 DN patient cells. Supplementing CARD11 DN T cells in vitro with glutamine and/or glucose yielded rebalanced differentiation towards a Th1 phenotype. Conclusion Collectively, our results show that the CBM signalosome governs nutrient transport and mTORC1 activation to support Th1 differentiation of human T cells. Enhancing ASCT2/GLUT1 expression and/or nutrient import represents a viable therapeutic avenue for treating patients with CARD11 DN mutations and other Th2-driven pathologies. Funding Source NIAID 5R01AI168295 Topic Categories Lymphocyte Differentiation and Peripheral Maintenance (LYM)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (8)

A

Allison Ruchinskas

Henry M. Jackson Fndn. for the Advancement of Mil. Med

B

Bradly Bauman

Yale University

M

Melissa Kallarakal

Uniformed Services University of the Health Sciences

J

Joshua Milner

Columbia University

V

Vincent Petit

M

Marc Sitbon

Metafora Biosystems

N

Naomi Taylor

A

Andrew Snow

Uniformed Services University of the Health Sciences