[PDF][PDF] GATA factor-dependent positive-feedback circuit in acute myeloid leukemia cells

KR Katsumura, IM Ong, AW DeVilbiss, R Sanalkumar… - Cell reports, 2016 - cell.com
KR Katsumura, IM Ong, AW DeVilbiss, R Sanalkumar, EH Bresnick
Cell reports, 2016cell.com
The master regulatory transcription factor GATA-2 triggers hematopoietic stem and
progenitor cell generation. GATA2 haploinsufficiency is implicated in myelodysplastic
syndrome (MDS) and acute myeloid leukemia (AML), and GATA2 overexpression portends
a poor prognosis for AML. However, the constituents of the GATA-2-dependent genetic
network mediating pathogenesis are unknown. We described a p38-dependent mechanism
that phosphorylates GATA-2 and increases GATA-2 target gene activation. We demonstrate …
Summary
The master regulatory transcription factor GATA-2 triggers hematopoietic stem and progenitor cell generation. GATA2 haploinsufficiency is implicated in myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML), and GATA2 overexpression portends a poor prognosis for AML. However, the constituents of the GATA-2-dependent genetic network mediating pathogenesis are unknown. We described a p38-dependent mechanism that phosphorylates GATA-2 and increases GATA-2 target gene activation. We demonstrate that this mechanism establishes a growth-promoting chemokine/cytokine circuit in AML cells. p38/ERK-dependent GATA-2 phosphorylation facilitated positive autoregulation of GATA2 transcription and expression of target genes, including IL1B and CXCL2. IL-1β and CXCL2 enhanced GATA-2 phosphorylation, which increased GATA-2-mediated transcriptional activation. p38/ERK-GATA-2 stimulated AML cell proliferation via CXCL2 induction. As GATA2 mRNA correlated with IL1B and CXCL2 mRNAs in AML-M5 and high expression of these genes predicted poor prognosis of cytogenetically normal AML, we propose that the circuit is functionally important in specific AML contexts.
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