The Ikaros transcription factor is a critical regulator of lymphopoeisis. Ikaros is needed for the differentiation of B cell and plays an important role in tumor suppression in T cells. Contrary to the other Ikaros targeted mutant mice, the IkL/L mouse develops mature B cells after birth. With age, it develops Notch dependent tumors with similar mutations as thosefound in human T cell acute lymphoblastic leukemia (T-ALL). Thus, the IkL/L mouse is an excellent model to study mature B cell activation and T-ALL tumor development. Here, we have shown that the deletion of the promoter and exon1 of the Notch1 gene in IkL/L T cells activates a cryptic promoter in the 3’ region which leads to the production of truncated, constitutively activated Notch1 proteins that accelerate tumorigenesis in the IkL/L mice. Moreover, we give evidence for the existence of LICs in the IkL/L tumors as we have found a specific subpopulation of cells with a frequency of 1 in 500 which show self-renewal capacity. In addition, we demonstrated that some tumor cells have the ability to efflux the Hoechst dye and that this side population is enriched in quiescent cells. Finally, we elucidate that IkL/L B cells display an enhanced activation of ERK and p38 after BCR stimulation that results in hyper-proliferation and the production of autoantibodies relatedto systemic lupus erythematosus (SLE). Our results suggest that Ikaros is a negative regulator of B cell activation.