Avian coronaviruses induce inflammatory responses by activating p38/MAPK signaling and NLRP3/caspase-1 inflammasomes through sphingosine-1-phosphate receptor 1.

Publication date: May 23, 2026

Infectious bronchitis virus (IBV), a member of the γ-coronavirus genus within the Coronaviridae family, is a major pathogenic threat to the global poultry industry. Most IBV infections induce severe renal pathological lesions in chickens, yet the renal metabolic perturbations triggered by IBV infection remain largely elusive. Herein, we applied a metabolomic approach to characterize the metabolic profiles of kidney tissues from IBV-infected specific-pathogen-free (SPF) chickens. IBV infection caused profound alterations in the renal metabolome, encompassing amino acids and their derivatives, energy metabolites, and lipid molecules. Most amino acids and their derivatives were significantly downregulated at 7 days post-infection (dpi), indicating that IBV usurps host amino acid pools to support its own replication in SPF chickens. In addition, the levels of L-glutamine, D-mannose 1-phosphate, and D-galacturonate were markedly elevated post-infection, implying their potential roles in mediating host energy utilization and facilitating viral replication during IBV infection. Subsequently, sphingosine-1-phosphate (S1P)-a key bioactive lipid molecule-was identified as a prominently upregulated metabolite in IBV-infected kidney tissues. Follow-up functional experiments revealed that IBV infection upregulates the S1P-S1PR1 signaling axis, and concomitantly activates the p38/JNK/MAPK pathway as well as the NLRP3/caspase-1 inflammasome. Notably, S1PR1 was found to modulate the p38/MAPK signaling pathway and NLRP3/caspase-1 inflammasome, thereby regulating the expression of the proinflammatory cytokines IL-1β and IL-18. Collectively, our study delineates the comprehensive renal metabolic landscape of chickens in response to IBV infection and identifies S1PR1 as a pivotal regulatory target of IBV-induced renal inflammation. These findings provide novel mechanistic insights for the development of preventive and therapeutic strategies targeting metabolic signaling pathways against IBV infection.

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Concepts Keywords
Chickens Animals
Coronaviruses Caspase 1
Kidney Caspase 1
Pathological Chickens
Upregulated Coronavirus Infections
cytokine regulation
Infectious bronchitis virus
infectious bronchitis virus
Inflammasomes
Inflammasomes
Inflammation
inflammatory response
Kidney
Metabolomic analysis
Poultry Diseases
Receptors, Lysosphingolipid
Receptors, Lysosphingolipid
Signal Transduction
Specific Pathogen-Free Organisms
sphingosine-1-phosphate receptor 1

Semantics

Type Source Name
pathway REACTOME Inflammasomes
disease MESH bronchitis
disease MESH infections
drug DRUGBANK Amino acids
drug DRUGBANK L-Glutamine
drug DRUGBANK D-Mannose 1-Phosphate
pathway KEGG Viral replication
pathway KEGG MAPK signaling pathway
disease MESH inflammation
pathway REACTOME Reproduction
disease MESH included
drug DRUGBANK Phosphate ion
drug DRUGBANK Mannose
disease MESH andD
drug DRUGBANK Sphingosine
drug DRUGBANK Coenzyme M
disease MESH strains
disease MESH mul
disease MESH weight loss
drug DRUGBANK Water
disease MESH Viral infection
disease MESH tumors
disease MESH African swine fever
pathway REACTOME Metabolism
disease MESH syndrome
pathway REACTOME Glucose metabolism
pathway REACTOME Pentose phosphate pathway
drug DRUGBANK Sulfate ion
drug DRUGBANK Serine
pathway KEGG Endocytosis
pathway REACTOME Immune System
disease MESH injury
drug DRUGBANK Esomeprazole
disease MESH tar
disease MESH FBS
drug DRUGBANK Dimethyl sulfoxide
drug DRUGBANK Pentaerythritol tetranitrate
disease MESH ered
disease MESH PBS
disease MESH kid
drug DRUGBANK Nitrogen
drug DRUGBANK Aspartame
drug DRUGBANK Formic Acid
disease MESH arb
drug DRUGBANK Methyl isocyanate
drug DRUGBANK Flunarizine
drug DRUGBANK Trypsin
pathway REACTOME Digestion
drug DRUGBANK L-Tyrosine
drug DRUGBANK L-Valine
drug DRUGBANK L-Alanine
drug DRUGBANK Formaldehyde
drug DRUGBANK Methylergometrine
drug DRUGBANK Tretamine
disease MESH Coronavirus Infections
disease MESH Poultry Diseases
pathway REACTOME Signal Transduction

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