Cooperating, congenital neutropenia-associated Csf3r and Runx1 mutations activate pro-inflammatory signaling and inhibit myeloid differentiation of mouse HSPCs.
Malte RitterMaksim KlimiankouOlga KlimenkovaAxel SchambachDirk HoffmannAmy SchmidtLothar KanzDaniel C LinkKarl WelteJulia SkokowaPublished in: Annals of hematology (2020)
Patients with the pre-leukemia bone marrow failure syndrome called severe congenital neutropenia (CN) have an approximately 15% risk of developing acute myeloid leukemia (AML; called here CN/AML). Most CN/AML patients co-acquire CSF3R and RUNX1 mutations, which play cooperative roles in the development of AML. To establish an in vitro model of leukemogenesis, we utilized bone marrow lin- cells from transgenic C57BL/6-d715 Csf3r mice expressing a CN patient-mimicking truncated CSF3R mutation. We transduced these cells with vectors encoding RUNX1 wild type (WT) or RUNX1 mutant proteins carrying the R139G or R174L mutations. Cells transduced with these RUNX1 mutants showed diminished in vitro myeloid differentiation and elevated replating capacity, compared with those expressing WT RUNX1. mRNA expression analysis showed that cells transduced with the RUNX1 mutants exhibited hyperactivation of inflammatory signaling and innate immunity pathways, including IL-6, TLR, NF-kappaB, IFN, and TREM1 signaling. These data suggest that the expression of mutated RUNX1 in a CSF3R-mutated background may activate the pro-inflammatory cell state and inhibit myeloid differentiation.
Keyphrases
- acute myeloid leukemia
- wild type
- bone marrow
- transcription factor
- induced apoptosis
- cell cycle arrest
- allogeneic hematopoietic stem cell transplantation
- lymph node metastasis
- dendritic cells
- mesenchymal stem cells
- oxidative stress
- immune response
- cell death
- case report
- binding protein
- pi k akt
- endoplasmic reticulum stress
- cerebrospinal fluid
- toll like receptor
- type diabetes
- inflammatory response
- stem cells
- electronic health record
- prognostic factors
- machine learning
- lps induced
- big data
- high fat diet induced