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Proliferation and Differentiation of Murine Myeloid Precursor 32D/G-CSF-R Cells
Published on: February 21, 2018
Tumor suppressor function of Gata2 in acute promyelocytic leukemia
Casey D S Katerndahl1, Olivia R S Rogers1, Ryan B Day1
1Section of Stem Cell Biology, Division of Oncology, Department of Internal Medicine, Washington University School of Medicine, St Louis, MO.
Abstract:
Most patients with acute promyelocytic leukemia (APL) can be cured with combined all-trans retinoic acid (ATRA) and arsenic trioxide therapy, which induces the destruction of PML-RARA, the initiating fusion protein for this disease. However, the underlying mechanisms by which PML-RARA initiates and maintains APL cells are still not clear. Therefore, we identified genes that are dysregulated by PML-RARA in mouse and human APL cells and prioritized GATA2 for functional studies because it is highly expressed in preleukemic cells expressing PML-RARA, its high expression persists in transformed APL cells, and spontaneous somatic mutations of GATA2 occur during APL progression in mice and humans. These and other findings suggested that GATA2 may be upregulated to thwart the proliferative signal generated by PML-RARA and that its inactivation by mutation (and/or epigenetic silencing) may accelerate disease progression in APL and other forms of acute myeloid leukemia (AML). Indeed, biallelic knockout of Gata2 with CRISPR/Cas9-mediated gene editing increased the serial replating efficiency of PML-RARA-expressing myeloid progenitors (as well as progenitors expressing RUNX1-RUNX1T1, or deficient for Cebpa), increased mouse APL penetrance, and decreased latency. Restoration of Gata2 expression suppressed PML-RARA-driven aberrant self-renewal and leukemogenesis. Conversely, addback of a mutant GATA2R362G protein associated with APL and AML minimally suppressed PML-RARA-induced aberrant self-renewal, suggesting that it is a loss-of-function mutation. These studies reveal a potential role for Gata2 as a tumor suppressor in AML and suggest that restoration of its function (when inactivated) may provide benefit for AML patients.
Insights
GATA2 acts as a tumor suppressor in acute myeloid leukemia (AML). Its inactivation accelerates disease progression, while restoring GATA2 function may benefit AML patients.
Area of Science:
- Hematology
- Molecular Biology
- Oncology
Background:
- Acute promyelocytic leukemia (APL) is initiated by the PML-RARA fusion protein.
- While treatments like ATRA and arsenic trioxide are effective, the exact mechanisms of PML-RARA in APL pathogenesis remain unclear.
- Understanding gene dysregulation by PML-RARA is crucial for APL and broader acute myeloid leukemia (AML) research.
Purpose of the Study:
- To identify genes dysregulated by PML-RARA in APL.
- To investigate the role of GATA2 in APL development and progression.
- To explore GATA2's potential as a tumor suppressor in AML.
Main Methods:
- Gene expression analysis in mouse and human APL cells.
- Functional studies using CRISPR/Cas9 gene editing to knockout Gata2 in myeloid progenitors.
- Assessing the impact of Gata2 manipulation on leukemogenesis and self-renewal in vitro and in vivo.
- Evaluating the effect of mutant GATA2R362G on PML-RARA-driven aberrant self-renewal.
Main Results:
- GATA2 is highly expressed in preleukemic and APL cells, with mutations occurring during disease progression.
- Gata2 biallelic knockout enhanced myeloid progenitor self-renewal and accelerated APL development in mice.
- Restoring Gata2 expression suppressed PML-RARA-driven leukemogenesis.
- A specific GATA2 mutation (GATA2R362G) associated with APL/AML demonstrated loss-of-function, minimally impacting aberrant self-renewal.
Conclusions:
- GATA2 plays a critical role in suppressing leukemogenesis driven by PML-RARA and potentially other AML-associated fusion proteins.
- GATA2 functions as a tumor suppressor in AML, and its inactivation contributes to disease progression.
- Restoring GATA2 function in cases of inactivation presents a potential therapeutic strategy for AML patients.
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