IL-1β promotes MPN disease initiation by favoring early clonal expansion of JAK2-mutant hematopoietic stem cells

Author:

Rai Shivam1,Zhang Yang2ORCID,Grockowiak Elodie345,Kimmerlin Quentin1,Hansen Nils1,Stoll Cedric B.1,Usart Marc1,Luque Paz Damien6ORCID,Hao-Shen Hui1,Zhu Yexuan345,Roux Julien78ORCID,Bader Michael S.9,Dirnhofer Stefan10,Farady Christopher J.11,Schroeder Timm2,Méndez-Ferrer Simón345ORCID,Skoda Radek C.1

Affiliation:

1. 1Department of Biomedicine, Experimental Hematology, University Hospital Basel, University of Basel, Basel, Switzerland

2. 2Department of Biosystems Science and Engineering, Eidgenössische Technische Hochschule Zurich, Basel, Switzerland

3. 3Wellcome-MRC Cambridge Stem Cell Institute, Cambridge, United Kingdom

4. 4Department of Hematology, University of Cambridge, Cambridge, United Kingdom

5. 5National Health Service Blood and Transplant, Cambridge Biomedical Campus, Cambridge, United Kingdom

6. 6University of Angers, Nantes Université, CHU Angers, INSERM, CNRS, CRCI2NA, Angers, France

7. 7Department of Biomedicine, Bioinformatics core facility, University of Basel, Basel, Switzerland

8. 8Swiss Institute of Bioinformatics, Basel, Switzerland

9. 9Division of Hematology, University Hospital Basel, Basel, Switzerland

10. 10Department of Pathology, University Hospital Basel, Basel, Switzerland

11. 11Novartis Institutes for BioMedical Research Forum 1, Basel, Switzerland

Abstract

Abstract JAK 2-V617F is the most frequent somatic mutation causing myeloproliferative neoplasm (MPN). JAK2-V617F can be found in healthy individuals with clonal hematopoiesis of indeterminate potential (CHIP) with a frequency much higher than the prevalence of MPNs. The factors controlling the conversion of JAK2-V617F CHIP to MPN are largely unknown. We hypothesized that interleukin-1β (IL-1β)–mediated inflammation can favor this progression. We established an experimental system using bone marrow (BM) transplantations from JAK2-V617F and GFP transgenic (VF;GFP) mice that were further crossed with IL-1β−/− or IL-1R1−/− mice. To study the role of IL-1β and its receptor on monoclonal evolution of MPN, we performed competitive BM transplantations at high dilutions with only 1 to 3 hematopoietic stem cells (HSCs) per recipient. Loss of IL-1β in JAK2-mutant HSCs reduced engraftment, restricted clonal expansion, lowered the total numbers of functional HSCs, and decreased the rate of conversion to MPN. Loss of IL-1R1 in the recipients also lowered the conversion to MPN but did not reduce the frequency of engraftment of JAK2-mutant HSCs. Wild-type (WT) recipients transplanted with VF;GFP BM that developed MPNs had elevated IL-1β levels and reduced frequencies of mesenchymal stromal cells (MSCs). Interestingly, frequencies of MSCs were also reduced in recipients that did not develop MPNs, had only marginally elevated IL-1β levels, and displayed low GFP-chimerism resembling CHIP. Anti–IL-1β antibody preserved high frequencies of MSCs in VF;GFP recipients and reduced the rate of engraftment and the conversion to MPN. Our results identify IL-1β as a potential therapeutic target for preventing the transition from JAK2-V617F CHIP to MPNs.

Publisher

American Society of Hematology

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