4.8 Article

HOXA9 promotes MYC-mediated leukemogenesis by maintaining gene expression for multiple anti-apoptotic pathways

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ELIFE
卷 10, 期 -, 页码 -

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ELIFE SCIENCES PUBLICATIONS LTD
DOI: 10.7554/eLife.64148

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  1. Japan Society for the Promotion of Science [16H05337, 19H03694, 19K16791]
  2. Yamagata Prefectural Government Research grant
  3. City of Tsuruoka Research grant
  4. Dainippon Sumitomo Pharma Co., Ltd.
  5. Friends of Leukemia Research Fund Research grant
  6. Grants-in-Aid for Scientific Research [19H03694, 19K16791, 16H05337] Funding Source: KAKEN

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HOXA9 plays a crucial role in leukemogenesis by maintaining gene expression for anti-apoptotic pathways, particularly in synergy with MYC. Multiple anti-apoptotic pathways contribute to cooperative leukemogenesis by HOXA9 and MYC, shedding light on the high expression of HOXA9 in leukemia.
HOXA9 is often highly expressed in leukemias. However, its precise roles in leukemogenesis remain elusive. Here, we show that HOXA9 maintains gene expression for multiple anti-apoptotic pathways to promote leukemogenesis. In MLL fusion-mediated leukemia, MLL fusion directly activates the expression of MYC and HOXA9. Combined expression of MYC and HOXA9 induced leukemia, whereas single gene transduction of either did not, indicating a synergy between MYC and HOXA9. HOXA9 sustained expression of the genes implicated in the hematopoietic precursor identity when expressed in hematopoietic precursors, but did not reactivate it once silenced. Among the HOXA9 target genes, BCL2 and SOX4 synergistically induced leukemia with MYC. Not only BCL2, but also SOX4 suppressed apoptosis, indicating that multiple anti-apoptotic pathways underlie cooperative leukemogenesis by HOXA9 and MYC. These results demonstrate that HOXA9 is a crucial transcriptional maintenance factor that promotes MYC-mediated leukemogenesis, potentially explaining why HOXA9 is highly expressed in many leukemias.

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