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Hypoxia induces histone clipping and H3K4me3 loss in neutrophil progenitors resulting in long-term impairment of neutrophil immunity

Abstract:
The long-term impact of systemic hypoxia resulting from acute respiratory distress syndrome (ARDS) on the function of short-lived innate immune cells is unclear. We show that patients 3–6 months after recovering from ARDS have persistently impaired circulating neutrophil effector functions and an increased susceptibility to secondary infections. These defects are linked to a widespread loss of the activating histone mark H3K4me3 in genes that are crucial for neutrophil activities. By studying healthy volunteers exposed to altitude-induced hypoxemia, we demonstrate that oxygen deprivation alone causes this long-term neutrophil reprogramming. Mechanistically, mouse models of systemic hypoxia reveal that persistent loss of H3K4me3 originates in proNeu and preNeu progenitors within the bone marrow and is linked to N-terminal histone 3 clipping, which removes the lysine residue for methylation. Thus, we present new evidence that systemic hypoxia initiates a sustained maladaptive reprogramming of neutrophil immunity by triggering histone 3 clipping and H3K4me3 loss in neutrophil progenitors.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1038/s41590-025-02301-9

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Role:
Author
ORCID:
0000-0003-3914-2332


Publisher:
Nature Research
Journal:
Nature Immunology More from this journal
Volume:
26
Issue:
11
Pages:
1903-1915
Publication date:
2025-10-28
Acceptance date:
2025-09-10
DOI:
EISSN:
1529-2916
ISSN:
1529-2908


Language:
English
UUID:
uuid_bb20d3ca-45fb-4ce5-b291-4b64666da288
Source identifiers:
3425014
Deposit date:
2025-10-30
ARK identifier:
This ORA record was generated from metadata provided by an external service. It has not been edited by the ORA Team.

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