4.7 Article

IL-7 receptor signaling drives human B-cell progenitor differentiation and expansion

Journal

BLOOD
Volume 142, Issue 13, Pages 1113-1130

Publisher

AMER SOC HEMATOLOGY
DOI: 10.1182/blood.2023019721

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IL-7 signaling plays a crucial role in human B lymphopoiesis by promoting the proliferation of early B-cell progenitors and guiding cell fate decisions. This discovery has important implications for the treatment strategies of severe combined immunodeficiency patients and provides insights into the role of IL-7R signaling in leukemogenesis.
Although absence of interleukin-7 (IL-7) signaling completely abrogates T and B lymphopoiesis in mice, patients with severe combined immunodeficiency caused by mutations in the IL-7 receptor alpha chain (IL-7R alpha) still generate peripheral blood B cells. Consequently, human B lymphopoiesis has been thought to be independent of IL-7 signaling. Using flow cytometric analysis and single-cell RNA sequencing of bone marrow samples from healthy controls and patients who are IL-7R alpha deficient, in combination with in vitro modeling of human B-cell differentiation, we demonstrate that IL-7R signaling plays a crucial role in human B lymphopoiesis. IL-7 drives proliferation and expansion of early B-cell progenitors but not of pre-BII large cells and has a limited role in the prevention of cell death. Furthermore, IL-7 guides cell fate decisions by enhancing the expression of BACH2, EBF1, and PAX5, which jointly orchestrate the specification and commitment of early B-cell progenitors. In line with this observation, early B-cell progenitors of patients with IL-7R alpha deficiency still expressed myeloid-specific genes. Collectively, our results unveil a previously unknown role for IL-7 signaling in promoting the B-lymphoid fate and expanding early human B-cell progenitors while defining important differences between mice and humans. Our results have implications for hematopoietic stem cell transplantation strategies in patients with T- B+ severe combined immunodeficiency and provide insights into the role of IL-7R signaling in leukemogenesis.

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