Defective neutrophil clearance in <i>JAK2</i> <i>V617F</i> myeloproliferative neoplasms drives myelofibrosis via immune checkpoint CD24
Abstract
Abstract Myeloproliferative neoplasms (MPNs) are hematopoietic stem cell–driven malignancies marked by excessive myelopoiesis and high risk of myelofibrosis, which remains therapeutically challenging. Senescent neutrophils home daily to the bone marrow (BM) to be cleared by macrophages. This avoids their accumulation, which can increase the risk of chronic inflammation or oncogenesis. Neutrophils carrying the most common oncogenic MPN driver (JAK2V617F) are protected from apoptosis, which may prolong their life span and enhance their proinflammatory activity. In contrast, abnormal interactions of neutrophils with megakaryocytes (“emperipolesis”) have been associated with BM fibrosis in disparate hematologic disorders, including MPN and gray platelet syndrome; however, the underlying pathophysiology remains unclear. We investigated neutrophil homeostasis and cellular interactions in MPN. We found that senescent neutrophils evade homeostatic clearance and accumulate in JAK2V617F MPN, but not in MPN caused by the second most prevalent mutations affecting calreticulin gene. This is explained by granulocyte-macrophage colony-stimulating factor-JAK2-STAT5–dependent upregulation of the “don’t eat me” signal CD24 in neutrophils. Mechanistically, JAK2V617F CD24hi neutrophils evade efferocytosis, invade megakaryocytes, and increase active transforming growth factor β (TGF-β). Collectively, JAK2V617F neutrophil-megakaryocyte interactions promote platelet production in a humanized bioreactor and myelofibrosis in mouse models. Notably, chronic antibody blockade or genetic loss of CD24 restores clearance of senescent neutrophils and reduces emperipolesis and active TGF-β. Consequently, CD24 blockade improves thrombocytosis and prevents myelofibrosis in MPN mice. Taken together, these findings reveal defective neutrophil clearance as a cause of pathogenic microenvironmental interactions of inflammatory neutrophils with megakaryocytes, associated with myelofibrosis in MPN. Our study postulates CD24 as a candidate innate immune checkpoint in MPN.
Article Details
Authors (16)
Eman Khatib-Massalha
1Cambridge Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom
Christian A. Di Buduo
4Department of Molecular Medicine, University of Pavia, Pavia, Italy
Agathe L. Chédeville
5Instituto de Biomedicina de Sevilla, Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla, Seville, Spain
Ya-Hsuan Ho
1Cambridge Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom
Yexuan Zhu
1Cambridge Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom
Elodie Grockowiak
1Cambridge Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom
Yuki Date
1Cambridge Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom
Lam T. Khuat
1Cambridge Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom
Zijian Fang
1Cambridge Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom
José Quesada-Salas
5Instituto de Biomedicina de Sevilla, Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla, Seville, Spain
Eva Carrillo Félez
1Cambridge Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom
Matteo Migliavacca
Isabel Montero
7Department of Hematology, University Hospital Virgen del Rocío, Seville, Spain
José A. Pérez-Simón
5Instituto de Biomedicina de Sevilla, Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla, Seville, Spain
Alessandra Balduini
University of Pavia, Pavia, Italy
Simón Méndez-Ferrer
University of Seville