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Hepatic leukemia factor is a novel leukemic stem cell regulator in DNMT3A, NPM1, and FLT3-ITD triple-mutated AML

Authors :
Carsten Müller-Tidow
Binje Vick
R. Keith Humphries
Swati Garg
Daniel B. Lipka
Armando Reyes-Palomares
Claudia Waskow
Anne Bergeron
Josée Hébert
Suzan Imren
Jianglong Xia
Christian Rohde
Sébastien Lemieux
Caroline Pabst
Prarabdha Jagdhane
Patrick Gendron
Irmela Jeremias
Guillaume Richard-Carpentier
Lixiazi He
Vincent-Philippe Lavallée
Judith B. Zaugg
Guy Sauvageau
Frédéric Barabé
Source :
Blood, Blood 134, 263-276 (2019)
Publication Year :
2019

Abstract

FLT3, DNMT3A, and NPM1 are the most frequently mutated genes in cytogenetically normal acute myeloid leukemia (AML), but little is known about how these mutations synergize upon cooccurrence. Here we show that triple-mutated AML is characterized by high leukemia stem cell (LSC) frequency, an aberrant leukemia-specific GPR56highCD34low immunophenotype, and synergistic upregulation of Hepatic Leukemia Factor (HLF). Cell sorting based on the LSC marker GPR56 allowed isolation of triple-mutated from DNMT3A/NPM1 double-mutated subclones. Moreover, in DNMT3A R882-mutated patients, CpG hypomethylation at the HLF transcription start site correlated with high HLF mRNA expression, which was itself associated with poor survival. Loss of HLF via CRISPR/Cas9 significantly reduced the CD34+GPR56+ LSC compartment of primary human triple-mutated AML cells in serial xenotransplantation assays. HLF knockout cells were more actively cycling when freshly harvested from mice, but rapidly exhausted when reintroduced in culture. RNA sequencing of primary human triple-mutated AML cells after shRNA-mediated HLF knockdown revealed the NOTCH target Hairy and Enhancer of Split 1 (HES1) and the cyclin-dependent kinase inhibitor CDKN1C/p57 as novel targets of HLF, potentially mediating these effects. Overall, our data establish HLF as a novel LSC regulator in this genetically defined high-risk AML subgroup.

Details

ISSN :
00064971
Database :
OpenAIRE
Journal :
Blood
Accession number :
edsair.doi.dedup.....54cd2af6b5438518629c7c4b1b739d6c
Full Text :
https://doi.org/10.1182/blood.2018862383