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Havermans, M.

Publications and source records attributed to Havermans, M..

2 recordsLinked to original sources

Oncogene EVI1 Drives Acute Myeloid Leukemia Via a Targetable Interaction with CTBP2

Acute myeloid leukemia (AML) driven by the activation of EVI1 due to chromosome 3q26/MECOM rearrangements is incurable. Since transcription factors like EVI1 are notoriously hard to target, insight into the mechanism by which EVI1 drives myeloid transformation could provide alternative avenues for therapy. Applying protein folding predictions combined with proteomics technologies, we demonstrate that interaction with CTBP1 and CTBP2 via a single PLDLS motif in EVI1 is indispensable for leukemic transformation. Furthermore, we show that a 4x PLDLS repeat construct outcompetes binding of EVI1 to CTBP1 and CTBP2 and thereby inhibits proliferation of 3q26/MECOM rearranged AML both in in vitro and in xenotransplant models. This proof-of-concept study opens the possibility to therapeutically target one of the most incurable forms of AML with specific EVI1-CTBP inhibitors. This has important implications for other tumour types with aberrant expression of EVI1 as well as for cancers transformed by distinct CTBP-dependent oncogenic transcription factors.

cancer biology↗

Gata2-regulated Gfi1b expression controls endothelial programming during endothelial-to-hematopoietic transition

The first hematopoietic stem cells (HSCs) are formed through endothelial-to-hematopoietic transition (EHT) events during embryonic development. The transcription factor GATA2 is a crucial regulator of EHT and HSC function throughout life. Because GATA2 haploinsufficiency patients have inborn mutations, prenatal defects are likely to have an influence on disease development. In mice, Gata2 haploinsufficiency (Gata2+/-) reduces the number and the functionality of embryonic hematopoietic stem and progenitor cells (HSPCs) generated through EHT. However, the embryonic HSPC pool is heterogeneous and the mechanisms underlying this defect in Gata2+/- embryos are unclear. Here, we investigated whether Gata2 haploinsufficiency selectively affects a cellular subset undergoing EHT. We show that Gata2+/- HSPCs initiate but cannot fully activate hematopoietic programming during EHT. In addition, due to reduced activity of the endothelial repressor Gfi1b, Gata2+/- HSPCs cannot repress the endothelial identity to complete maturation. Finally, we show that hematopoietic-specific induction of gfi1b can restore HSC production in gata2b-null (gata2b-/-) zebrafish embryos. This study illustrates pivotal roles of Gata2 on the regulation of transcriptional network governing HSPC identity throughout EHT. HighlightsO_LIMaturation of embryonic Gata2+/- HSPCs is disturbed due to aberrant endothelial gene expression and incomplete activation of hematopoietic transcriptional programming. C_LIO_LIGata2 activates Gfi1b to repress endothelial identity of embryonic HSPCs during maturation. C_LIO_LIHematopoietic-specific induction of gfi1b restores the number of embryonic HSCs in gata2b-/- zebrafish. C_LI

developmental biology↗