DEPTOR is a direct NOTCH1 target that promotes cell proliferation and survival in T-cell leukemia

Y Hu, H Su, C Liu, Z Wang, L Huang, Q Wang, S Liu… - Oncogene, 2017 - nature.com
Y Hu, H Su, C Liu, Z Wang, L Huang, Q Wang, S Liu, S Chen, J Zhou, P Li, Z Chen, H Liu…
Oncogene, 2017nature.com
Aberrant activation of NOTCH1 signaling plays a vital role in the pathogenesis of T-cell
acute lymphoblastic leukemia (T-ALL). Yet the molecular events downstream of NOTCH1
that drive T-cell leukemogenesis remain incompletely understood. Starting from genome-
wide gene-expression profiling to seek important NOTCH1 transcriptional targets, we
identified DEP-domain containing mTOR-interacting protein (DEPTOR), which was
previously shown to be important in multiple myeloma but remains functionally unclear in …
Abstract
Aberrant activation of NOTCH1 signaling plays a vital role in the pathogenesis of T-cell acute lymphoblastic leukemia (T-ALL). Yet the molecular events downstream of NOTCH1 that drive T-cell leukemogenesis remain incompletely understood. Starting from genome-wide gene-expression profiling to seek important NOTCH1 transcriptional targets, we identified DEP-domain containing mTOR-interacting protein (DEPTOR), which was previously shown to be important in multiple myeloma but remains functionally unclear in other hematological malignancies. Mechanistically, we demonstrated NOTCH1 directly bound to and activated the human DEPTOR promoter in T-ALL cells. DEPTOR depletion abolished cellular proliferation, attenuated glycolytic metabolism and enhanced cell death, while ectopically expressed DEPTOR significantly promoted cell growth and glycolysis. We further showed that DEPTOR depletion inhibited while its overexpression enhanced AKT activation in T-ALL cells. Importantly, AKT inhibition completely abrogated DEPTOR-mediated cell growth advantages. Moreover, DEPTOR depletion in a human T-ALL xenograft model significantly delayed T-ALL onset and caused a substantial decrease of AKT activation in leukemic blasts. We thus reveal a novel mechanism involved in NOTCH1-driven leukemogenesis, identifying the transcriptional control of DEPTOR and its regulation of AKT as additional key elements of the leukemogenic program activated by NOTCH1.
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