4.7 Article

Phf6 Loss Enhances HSC Self-Renewal Driving Tumor Initiation and Leukemia Stem Cell Activity in T-ALL

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CANCER DISCOVERY
卷 9, 期 3, 页码 436-451

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/2159-8290.CD-18-1005

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  1. NIH [R35 CA210065, R01 CA155743, CA180827, CA196172, U54 CA193313, R01 CA185486, U54 CA209997, CA180820, CA189859, CA14958, CA180791, CA17145, U10 CA180827, U10 CA98543]
  2. Human Specimen Banking Grant [U24 CA114766]
  3. Herbert Irving Comprehensive Cancer Center Genomics, Flow Cytometry and Transgenic Mouse Shared Resources [P30 CA013696]
  4. Rally Foundation fellowship
  5. Fund for Scientific Research (FWO) Flanders
  6. Damon-Runyon Sohn Pediatric Cancer fellowship

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The plant homeodomain 6 gene (PHF6) is frequently mutated in human T-cell acute lymphoblastic leukemia (T-ALL); however, its specific functional role in leukemia development remains to be established. Here, we show that loss of PHF6 is an early mutational event in leukemia transformation. Mechanistically, genetic inactivation of Phf6 in the hematopoietic system enhances hematopoietic stem cell (HSC) long-term self-renewal and hematopoietic recovery after chemotherapy by rendering Phf6 knockout HSCs more quiescent and less prone to stress-induced activation. Consistent with a leukemia-initiating tumor suppressor role, inactivation of Phf6 in hematopoietic progenitors lowers the threshold for the development of NOTCH1-induced T-ALL. Moreover, loss of Phf6 in leukemia lymphoblasts activates a leukemia stem cell transcriptional program and drives enhanced T-ALL leukemia-initiating cell activity. These results implicate Phf6 in the control of HSC homeostasis and long-term self-renewal and support a role for PHF6 loss as a driver of leukemia-initiating cell activity in T-ALL. SIGNIFICANCE: Phf6 controls HSC homeostasis, leukemia initiation, and T-ALL leukemia-initiating cell self-renewal. These results substantiate a role for PHF6 mutations as early events and drivers of leukemia stem cell activity in the pathogenesis of T-ALL.

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