The JAK2 617V>F mutation triggers erythropoietin hypersensitivity and terminal erythroid amplification in primary cells from patients with polycythemia vera

Author:

Dupont Sabrina1,Massé Aline1,James Chloé12,Teyssandier Irène3,Lécluse Yann4,Larbret Frédéric1,Ugo Valérie5,Saulnier Patrick6,Koscielny Serge7,Le Couédic Jean Pierre1,Casadevall Nicole138,Vainchenker William1,Delhommeau François138

Affiliation:

1. Institut National de la Santé et de la Recherche Médicale (INSERM), Unité 790, Université Paris Sud, Institut Gustave Roussy, Villejuif;

2. INSERM, E217, Université Victor Ségalen Bordeaux 2, Bordeaux;

3. Assistance Publique–Hopitaux de Paris, Laboratoire d'Hématologie, Hôpital Hôtel–Dieu et Hôpital Saint-Antoine, Paris;

4. Institut Gustave Roussy, Service Commun de Cytométrie, Villejuif;

5. Centre Hospitalier Universitaire de Brest, Laboratoire d'Hématologie, Brest;

6. Institut Gustave Roussy, Laboratoire de Recherche Translationnelle, Villejuif;

7. Institut Gustave Roussy, Department of Biostatistics and Epidemiology, Villejuif; and

8. Université Pierre et Marie Curie, Paris, France

Abstract

Abstract The JAK2 617V>F mutation is frequent in polycythemia vera (PV) and essential thrombocythemia (ET). Using quantitative polymerase chain reaction (PCR), we found that high levels of JAK2 617V>F in PV correlate with increased granulocytes and high levels of hemoglobin and endogenous erythroid colony formation. We detected normal progenitors and those that were heterozygous or homozygous for the mutation by genotyping ET and PV clonal immature and committed progenitors. In PV patients, we distinguished homozygous profiles with normal, heterozygous, and homozygous progenitors from heterozygous profiles with only heterozygous and normal progenitors. PV patients with a heterozygous profile had more mutated, committed progenitors than did other PV and ET patients, suggesting a selective amplification of mutated cells in the early phases of hematopoiesis. We demonstrated that mutated erythroid progenitors were more sensitive to erythropoietin than normal progenitors, and that most homozygous erythroid progenitors were erythropoietin independent. Moreover, we observed a greater in vitro erythroid amplification and a selective advantage in vivo for mutated cells in late stages of hematopoiesis. These results suggest that, for PV, erythrocytosis can occur through two mechanisms: terminal erythroid amplification triggered by JAK2 617V>F homozygosity, and a 2-step process including the upstream amplification of heterozygous cells that may involve additional molecular events.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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