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CBFβ-MYH11 interferes with megakaryocyte differentiation via modulating a gene program that includes GATA2 and KLF1.

Authors :
Yi G
Mandoli A
Jussen L
Tijchon E
van Bergen MGJM
Cordonnier G
Hansen M
Kim B
Nguyen LN
Jansen PWTC
Vermeulen M
van der Reijden B
van den Akker E
Bond J
Martens JHA
Source :
Blood cancer journal [Blood Cancer J] 2019 Mar 08; Vol. 9 (3), pp. 33. Date of Electronic Publication: 2019 Mar 08.
Publication Year :
2019

Abstract

The inv(16) acute myeloid leukemia-associated CBFβ-MYH11 fusion is proposed to block normal myeloid differentiation, but whether this subtype of leukemia cells is poised for a unique cell lineage remains unclear. Here, we surveyed the functional consequences of CBFβ-MYH11 in primary inv(16) patient blasts, upon expression during hematopoietic differentiation in vitro and upon knockdown in cell lines by multi-omics profiling. Our results reveal that primary inv(16) AML cells share common transcriptomic signatures and epigenetic determiners with megakaryocytes and erythrocytes. Using in vitro differentiation systems, we reveal that CBFβ-MYH11 knockdown interferes with normal megakaryocyte maturation. Two pivotal regulators, GATA2 and KLF1, are identified to complementally occupy RUNX1-binding sites upon fusion protein knockdown, and overexpression of GATA2 partly induces a gene program involved in megakaryocyte-directed differentiation. Together, our findings suggest that in inv(16) leukemia, the CBFβ-MYH11 fusion inhibits primed megakaryopoiesis by attenuating expression of GATA2/KLF1 and interfering with a balanced transcriptional program involving these two factors.

Details

Language :
English
ISSN :
2044-5385
Volume :
9
Issue :
3
Database :
MEDLINE
Journal :
Blood cancer journal
Publication Type :
Academic Journal
Accession number :
30850577
Full Text :
https://doi.org/10.1038/s41408-019-0194-8