Blockade of NKp46⁻ CCR6⁻ ILC3 autophagy protects against necrotizing enterocolitis by restoring energy metabolism balance in mice

J Junyu He M Meiqi Chen L Laiqin Peng Q Qiqiong Wang Y Yizhuang Lu Y Yimin Chen X Xinyao Li (Department of Chemistry, College of Sciences) Y Yanling Mou J Jianjun Wang Y Yuxiong Guo K Kai Wu (BNLMS, College of Chemistry and Molecular Engineering) Y Yumei He

Abstract

Abstract Group 3 innate lymphoid cells (ILC3) are crucial in neonatal necrotizing enterocolitis (NEC); however, the underlying mechanisms remain elusive. Here, we identify NKp46⁻CCR6⁻ (double-negative, DN) ILC3s as the dominant pathogenic subset driving NEC via IL-17 A secretion, which disrupts intestinal barrier integrity. Mechanistically, Atg5 activates autophagy in DN ILC3s during NEC. Atg5 conditional knockout in RORγt⁺ cells mitigates NEC, reduces DN ILC3 accumulation and IL-17 A production. Atg5 deficiency also decreases HIF-1α chromatin accessibility and transcriptional activity, shifting DN ILC3 metabolism from glycolysis to fatty acid oxidation. Lipidomics reveals phosphatidylcholine as a key downstream metabolite of Atg5-mediated autophagy. Phosphatidylcholine supplementation suppresses DN ILC3-driven inflammation, restores metabolic homeostasis, elevates Clostridium abundance, and ameliorates NEC in mice. Importantly, human NEC tissues exhibit increased ILC3 proportions, autophagic activity, and IL-17 A/IL-22 secretion. Thus, we uncover an Atg5–autophagy–glycolipid metabolic axis in DN ILC3s that drives NEC pathogenesis, providing a promising therapeutic target for neonatal NEC.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 19, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

J

Junyu He

M

Meiqi Chen

L

Laiqin Peng

Q

Qiqiong Wang

Y

Yizhuang Lu

Y

Yimin Chen

X

Xinyao Li

Department of Chemistry, College of Sciences

Y

Yanling Mou

J

Jianjun Wang

Y

Yuxiong Guo

K

Kai Wu

BNLMS, College of Chemistry and Molecular Engineering

Y

Yumei He