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March 14, 2026Nature1 citationsOpen Access

A mechanism to initiate emergency type 2 myelopoiesis

AFAlexandre FagnanCGCristina Di GenuaYMYiran Meng

Key Points

  • This research aims to elucidate how immune responses initiate type 2 myelopoiesis from progenitor cells during parasitic infections.
  • Examined the effects of Heligmosomoides polygyrus infection on progenitor cell differentiation.
  • Analyzed the role of IL-33 and LMO4 in regulating GATA transcription factors.
  • Utilized GATA2 mutation models to assess impacts on myeloid lineage commitment.
  • Helminth infection increased commitment of EMPPs to myeloid lineage at the cost of erythropoiesis.
  • IL-33 accumulation in the bone marrow was linked to enhanced LMO4 expression and myeloid differentiation.
  • GATA2 mutations disrupted LMO4 interaction, leading to reduced basophil and eosinophil production.

Abstract

Immune responses to parasite infection involve the increased production of basophils and eosinophils. These two myeloid cell types have key roles in type 2 anti-parasite immunity1 and rely on GATA family transcription factors for their specification2,3. The first committed step in basophil and eosinophil production is generation of basophil-eosinophil-mast cell progenitors (BEMPs) from oligopotent erythroid-primed multipotent progenitors (EMPPs). However, it is not well established how immune responses act on progenitors to initiate type 2 myelopoiesis. Here we show that infection with the helminth Heligmosomoides polygyrus increases EMPP commitment to myeloid fate at the expense of erythropoiesis. Upon infection with H. polygyrus, the IL-33 alarmin accumulated in the bone marrow, causing EMPPs to upregulate the GATA co-factor LMO4 and preferentially differentiate into myeloid cells. LMO4 was sufficient to instruct myeloid fate in EMPPs by interacting with GATA2, displacing the FOG1 co-factor and redistributing GATA binding from megakaryocyte-erythroid-specific to basophil, eosinophil and mast cell (BEM)-specific chromatin. Accordingly, mice carrying a GATA2 mutation that selectively impairs the LMO4-GATA2 interaction were deficient in GATA factor allocation to BEM chromatin, myeloid lineage commitment, basophil and eosinophil production, and parasite control. This identifies LMO4 as an IL-33-regulated master regulator of type 2 myelopoiesis, and transcription factor reallocation as a mechanism of lineage commitment.

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Cite This Study

Fagnan et al. (2026) studied this question.

synapsesocial.com/papers/69b4fbf9b39f7826a300c7cbhttps://doi.org/10.1038/s41586-026-10256-6
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