Translational control is essential for immune function, but its roles in immune tolerance and lymphomagenesis remain poorly defined. Here, we show that Cγ1Cre-mediated deletion of Eif3e, which encodes a subunit of the eIF3 translation initiation complex, in B cells causes lymphoproliferation, malignant transformation of Eif3e-sufficient bystander lymphocytes, and premature death. Eif3e-deficient B cells upregulate the costimulatory molecule CD80, promoting CD4+ T cell activation and differentiation into IL-4-producing TFH-like cells. These cells, in turn, activate bystander B cells, increase MHC class II expression, and establish a feedforward loop of Eif3e deletion and lymphocyte activation. Despite their hyperactivated state, Eif3e-deficient B cells exhibit impaired proliferation, reduced survival, and defective differentiation. This self-amplifying circuit of aberrant B and T cell activation ultimately drives malignant transformation of Eif3e-sufficient lymphocytes. Our findings uncover an eIF3e-dependent translational checkpoint that preserves immune homeostasis and restrains lymphomagenesis.
Lin et al. (2026) studied this question.