The release of zearalenone-induced heterophil extracellular traps in chickens is associated with autophagy, glycolysis, PAD enzyme, and P2X


Journal

Poultry science
ISSN: 1525-3171
Titre abrégé: Poult Sci
Pays: England
ID NLM: 0401150

Informations de publication

Date de publication:
Oct 2023
Historique:
received: 29 04 2023
revised: 10 07 2023
accepted: 15 07 2023
medline: 27 9 2023
pubmed: 6 8 2023
entrez: 5 8 2023
Statut: ppublish

Résumé

Zearalenone (ZEA) is produced mainly by fungi belonging to genus Fusarium in foods and feeds. Heterophil extracellular traps (HETs) are a novel defense mechanism of chicken innate immunity involving activated heterophils. However, the conditions and requirements for ZEA-triggered HET release remain unknown. In this study, immunostaining analysis demonstrated that ZEA-triggered extracellular fibers were composed of histone and elastase assembled on DNA skeleton, showing that ZEA can induce the formation of HETs. Further experiments indicated that ZEA-induced HET release was concentration-dependent (ranging from 20 to 80 μM ZEA) and time-dependent (ranging from 30 to 180 min). Moreover, in 80 μM ZEA-exposed chicken heterophils, reactive oxygen species (ROS) level, catalase (CAT), superoxide dismutase (SOD) activity, malondialdehyde (MDA) content, and glutathione (GSH) content were increased. Simultaneously, ZEA at 80 μM activated ERK and p38 MAPK signaling pathways by increasing the phosphorylation level of ERK and p38 proteins. Pharmacological inhibition assays revealed that blocking nicotinamide adenine dinucleotide phosphate (NADPH) oxidase, ERK, and p38 mitogen-activated protein kinase (MAPK) reduced ZEA-induced ROS levels but had no impact on HET formation. Furthermore, immunostaining analysis indicated that the heterophil underwent the formation of autophagosome based on being stained with LC3B. The pharmacological inhibition assays demonstrated that rapamycin-, wortmannin-, and 3-methyladenine (3-MA)-treatments modulated ZEA-triggered HET formation, indicating that heterophil autophagy played a key role in ZEA-induced HET formation. Further studies on energy metabolism showed that inhibition of lactate/glucose transport, hexokinase-2 (HK-2), fructose-2,6-biphosphatase 3 (PFKFB3) in glycolysis abated ZEA-induced HETs, implying that glycolysis was one of the factors influencing the ZEA-induced HET formation. Besides, inhibition of the peptidylarginine deiminase (PAD) enzyme and P2X

Identifiants

pubmed: 37542939
pii: S0032-5791(23)00465-0
doi: 10.1016/j.psj.2023.102946
pmc: PMC10428124
pii:
doi:

Substances chimiques

Reactive Oxygen Species 0
Zearalenone 5W827M159J
Protein-Arginine Deiminases EC 3.5.3.15

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

102946

Informations de copyright

Copyright © 2023 The Authors. Published by Elsevier Inc. All rights reserved.

Auteurs

Hanpeng Wu (H)

College of Life Sciences and Engineering, Foshan University, Foshan 528225, Guangdong Province, PR China.

Xuhai Li (X)

College of Life Sciences and Engineering, Foshan University, Foshan 528225, Guangdong Province, PR China.

Zhan Zhang (Z)

College of Life Sciences and Engineering, Foshan University, Foshan 528225, Guangdong Province, PR China.

Yingrong Ye (Y)

College of Life Sciences and Engineering, Foshan University, Foshan 528225, Guangdong Province, PR China.

Yichun Chen (Y)

College of Life Sciences and Engineering, Foshan University, Foshan 528225, Guangdong Province, PR China.

Jingjing Wang (J)

College of Life Sciences and Engineering, Foshan University, Foshan 528225, Guangdong Province, PR China.

Zhengtao Yang (Z)

College of Life Sciences and Engineering, Foshan University, Foshan 528225, Guangdong Province, PR China.

Ershun Zhou (E)

College of Life Sciences and Engineering, Foshan University, Foshan 528225, Guangdong Province, PR China. Electronic address: zhouershun@fosu.edu.cn.

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Classifications MeSH