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1.
Fish Shellfish Immunol ; 151: 109734, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38950759

ABSTRACT

Toll-like receptors (TLRs) are pattern recognition receptors that trigger host immune responses against various pathogens by detecting evolutionarily conserved pathogen-associated molecular patterns (PAMPs). TLR21 is a member of the Toll-like receptor family, and emerging data suggest that it recognises unmethylated CpG DNA and is considered a functional homologue of mammalian TLR9. However, little is known regarding the role of TLR21 in the fish immune response. In the present study, we isolated the cDNA sequence of TLR21 from the largemouth bass (Micropterus salmoides) and termed it MsTLR21. The MsTLR21 gene contained an open reading frame (ORF) of 2931 bp and encodes a polypeptide of 976 amino acids. The predicted MsTLR21 protein has two conserved domains, a conserved leucine-rich repeats (LRR) domain and a C-terminal Toll-interleukin (IL) receptor (TIR) domain, similar to those of other fish and mammals. In healthy largemouth bass, the TLR21 transcript was broadly expressed in all the examined tissues, with the highest expression levels in the gills. After challenge with Nocardia seriolae and polyinosinic polycytidylic acid (Poly[I:C]), the expression of TLR21 mRNA was upregulated or downregulated in all tissues tested. Overexpression of TLR21 in 293T cells showed that it has a positive regulatory effect on nuclear factor-kappaB (NF-κB) and interferons-ß (IFN-ß) activity. Subcellular localisation analysis showed that TLR21 was expressed in the cytoplasm. We performed pull-down assays and determined that TLR21 did not interact with myeloid differentiation primary response gene 88 (Myd88); however, it interacted with TIR domain-containing adaptor inducing interferon-ß (TRIF). Taken together, these findings suggest that MsTLR21 plays important roles in TLR/IL-1R signalling pathways and the immune response to pathogen invasion.


Subject(s)
Adaptor Proteins, Vesicular Transport , Amino Acid Sequence , Bass , Fish Diseases , Fish Proteins , NF-kappa B , Phylogeny , Animals , Bass/immunology , Bass/genetics , Fish Proteins/genetics , Fish Proteins/immunology , Fish Proteins/chemistry , NF-kappa B/genetics , NF-kappa B/metabolism , NF-kappa B/immunology , Fish Diseases/immunology , Adaptor Proteins, Vesicular Transport/genetics , Adaptor Proteins, Vesicular Transport/immunology , Adaptor Proteins, Vesicular Transport/chemistry , Adaptor Proteins, Vesicular Transport/metabolism , Signal Transduction/immunology , Gene Expression Regulation/immunology , Immunity, Innate/genetics , Sequence Alignment/veterinary , Myeloid Differentiation Factor 88/genetics , Myeloid Differentiation Factor 88/metabolism , Myeloid Differentiation Factor 88/immunology , Myeloid Differentiation Factor 88/chemistry , Gene Expression Profiling/veterinary , Toll-Like Receptors/genetics , Toll-Like Receptors/immunology , Toll-Like Receptors/chemistry , Toll-Like Receptors/metabolism , Base Sequence
2.
J Agric Food Chem ; 72(30): 16761-16776, 2024 Jul 31.
Article in English | MEDLINE | ID: mdl-39012185

ABSTRACT

This study investigated the effects of citrus flavonoids (CF) and compared to antibiotics on piglet growth and gut health. Weaned piglets were fed either a basal diet (CON) or a basal diet supplemented with 75 mg/kg chlortetracycline (CTC), 20 mg/kg CF (CF1), 40 mg/kg CF (CF2), or 80 mg/kg CF (CF3). The CF group, especially CF3, exhibited improved growth performance; reduced diarrhea; significantly higher levels of serum growth factors, immunoglobulins, and anti-inflammatory cytokines; and significantly lower levels of pro-inflammatory factors and markers of intestinal barrier damage (P < 0.05). The intestinal mucosa proteins ZO-1 and occludin increased, while NF-κB and TLR2 decreased, correlating with CF dosage (P < 0.05). Furthermore, CF promoted a favorable balance in the gut microbiota, with an increased relative abundance of Bacteroidetes and Prevotella and decreased taxa Tenericutes and Clostridiales. Overall, CF enhanced piglet growth and gut health by modulating the TLR2/NF-κB pathway, offering a natural antibiotic alternative. The optimal dose of CF was 80 mg/kg.


Subject(s)
Bacteria , Citrus , Flavonoids , Gastrointestinal Microbiome , NF-kappa B , Signal Transduction , Toll-Like Receptor 2 , Weaning , Animals , Gastrointestinal Microbiome/drug effects , Swine/growth & development , Swine/immunology , NF-kappa B/metabolism , NF-kappa B/immunology , NF-kappa B/genetics , Toll-Like Receptor 2/metabolism , Citrus/chemistry , Flavonoids/administration & dosage , Flavonoids/pharmacology , Signal Transduction/drug effects , Bacteria/classification , Bacteria/isolation & purification , Bacteria/drug effects , Bacteria/genetics , Bacteria/metabolism , Bacteria/growth & development , Dietary Supplements/analysis , Animal Feed/analysis , Male
3.
Front Immunol ; 15: 1352404, 2024.
Article in English | MEDLINE | ID: mdl-38846950

ABSTRACT

Background: CD2v, a critical outer envelope glycoprotein of the African swine fever virus (ASFV), plays a central role in the hemadsorption phenomenon during ASFV infection and is recognized as an essential immunoprotective protein. Monoclonal antibodies (mAbs) targeting CD2v have demonstrated promise in both diagnosing and combating African swine fever (ASF). The objective of this study was to develop specific monoclonal antibodies against CD2v. Methods: In this investigation, Recombinant CD2v was expressed in eukaryotic cells, and murine mAbs were generated through meticulous screening and hybridoma cloning. Various techniques, including indirect enzyme-linked immunosorbent assay (ELISA), western blotting, immunofluorescence assay (IFA), and bio-layer interferometry (BLI), were employed to characterize the mAbs. Epitope mapping was conducted using truncation mutants and epitope peptide mapping. Results: An optimal antibody pair for a highly sensitive sandwich ELISA was identified, and the antigenic structures recognized by the mAbs were elucidated. Two linear epitopes highly conserved in ASFV genotype II strains, particularly in Chinese endemic strains, were identified, along with a unique glycosylated epitope. Three mAbs, 2B25, 3G25, and 8G1, effectively blocked CD2v-induced NF-κB activation. Conclusions: This study provides valuable insights into the antigenic structure of ASFV CD2v. The mAbs obtained in this study hold great potential for use in the development of ASF diagnostic strategies, and the identified epitopes may contribute to vaccine development against ASFV.


Subject(s)
African Swine Fever Virus , African Swine Fever , Antibodies, Monoclonal , Epitope Mapping , NF-kappa B , Animals , African Swine Fever Virus/immunology , NF-kappa B/metabolism , NF-kappa B/immunology , Swine , Mice , African Swine Fever/immunology , African Swine Fever/virology , Antibodies, Monoclonal/immunology , Viral Envelope Proteins/immunology , Epitopes/immunology , Antibodies, Viral/immunology , Mice, Inbred BALB C
4.
J Agric Food Chem ; 72(25): 14165-14176, 2024 Jun 26.
Article in English | MEDLINE | ID: mdl-38872428

ABSTRACT

Atractylodes macrocephala Koidz, a traditional Chinese medicine, contains atractylenolide I (ATR-I), which has potential anticancer, anti-inflammatory, and immune-modulating properties. This study evaluated the therapeutic potential of ATR-I for indomethacin (IND)-induced gastric mucosal lesions and its underlying mechanisms. Noticeable improvements were observed in the histological morphology and ultrastructures of the rat gastric mucosa after ATR-I treatment. There was improved blood flow, a significant decrease in the expression of tumor necrosis factor-α (TNF-α), interleukin-6 (IL-6), IL-1ß, and IL-18, and a marked increase in prostaglandin E2 (PGE2) expression in ATR-I-treated rats. Furthermore, there was a significant decrease in the mRNA and protein expression levels of NOD-like receptor thermal protein domain associated protein 3 (NLRP3), apoptosis-associated speck-like protein (ASC), cysteinyl aspartate specific proteinase-1 (caspase-1), and nuclear factor-κB (NF-κB) in rats treated with ATR-I. The results show that ATR-I inhibits the NLRP3 inflammasome signaling pathway and effectively alleviates local inflammation, thereby improving the therapeutic outcomes against IND-induced gastric ulcers in rats.


Subject(s)
Atractylodes , Gastric Mucosa , Indomethacin , Inflammasomes , Lactones , NLR Family, Pyrin Domain-Containing 3 Protein , Rats, Sprague-Dawley , Sesquiterpenes , Stomach Ulcer , Animals , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , NLR Family, Pyrin Domain-Containing 3 Protein/genetics , Indomethacin/adverse effects , Stomach Ulcer/drug therapy , Stomach Ulcer/chemically induced , Stomach Ulcer/metabolism , Rats , Sesquiterpenes/pharmacology , Sesquiterpenes/chemistry , Lactones/pharmacology , Lactones/chemistry , Inflammasomes/metabolism , Inflammasomes/genetics , Inflammasomes/drug effects , Male , Atractylodes/chemistry , Gastric Mucosa/drug effects , Gastric Mucosa/metabolism , Humans , NF-kappa B/genetics , NF-kappa B/metabolism , NF-kappa B/immunology , Tumor Necrosis Factor-alpha/genetics , Tumor Necrosis Factor-alpha/metabolism , Tumor Necrosis Factor-alpha/immunology , Interleukin-1beta/genetics , Interleukin-1beta/metabolism , Interleukin-1beta/immunology , Caspase 1/genetics , Caspase 1/metabolism , Interleukin-6/genetics , Interleukin-6/metabolism , Interleukin-6/immunology , Interleukin-18/genetics , Interleukin-18/metabolism
5.
Signal Transduct Target Ther ; 9(1): 163, 2024 Jun 17.
Article in English | MEDLINE | ID: mdl-38880789

ABSTRACT

Chronic obstructive pulmonary disease (COPD) is characterised by persistent airway inflammation even after cigarette smoking cessation. Neutrophil extracellular traps (NETs) have been implicated in COPD severity and acute airway inflammation induced by short-term cigarette smoke (CS). However, whether and how NETs contribute to sustained airway inflammation in COPD remain unclear. This study aimed to elucidate the immunoregulatory mechanism of NETs in COPD, employing human neutrophils, airway epithelial cells (AECs), dendritic cells (DCs), and a long-term CS-induced COPD mouse model, alongside cyclic guanosine monophosphate-adenosine monophosphate synthase and toll-like receptor 9 knockout mice (cGAS--/-, TLR9-/-); Additionally, bronchoalveolar lavage fluid (BALF) of COPD patients was examined. Neutrophils from COPD patients released greater cigarette smoke extract (CSE)-induced NETs (CSE-NETs) due to mitochondrial respiratory chain dysfunction. These CSE-NETs, containing oxidatively-damaged DNA (NETs-DNA), promoted AECs proliferation, nuclear factor kappa B (NF-κB) activation, NF-κB-dependent cytokines and type-I interferons production, and DC maturation, which were ameliorated/reversed by silencing/inhibition of cGAS/TLR9. In the COPD mouse model, blocking NETs-DNA-sensing via cGAS-/- and TLR9-/- mice, inhibiting NETosis using mitoTEMPO, and degrading NETs-DNA with DNase-I, respectively, reduced NETs infiltrations, airway inflammation, NF-κB activation and NF-κB-dependent cytokines, but not type-I interferons due to IFN-α/ß receptor degradation. Elevated NETs components (myeloperoxidase and neutrophil elastase activity) in BALF of COPD smokers correlated with disease severity and NF-κB-dependent cytokine levels, but not type-I interferon levels. In conclusion, NETs-DNA promotes NF-κB-dependent autoimmunity via cGAS/TLR9 in long-term CS exposure-induced COPD. Therefore, targeting NETs-DNA and cGAS/TLR9 emerges as a potential strategy to alleviate persistent airway inflammation in COPD.


Subject(s)
Extracellular Traps , NF-kappa B , Neutrophils , Nucleotidyltransferases , Pulmonary Disease, Chronic Obstructive , Toll-Like Receptor 9 , Pulmonary Disease, Chronic Obstructive/genetics , Pulmonary Disease, Chronic Obstructive/immunology , Pulmonary Disease, Chronic Obstructive/pathology , Toll-Like Receptor 9/genetics , Toll-Like Receptor 9/immunology , Extracellular Traps/immunology , Extracellular Traps/genetics , Nucleotidyltransferases/genetics , Nucleotidyltransferases/immunology , Animals , Humans , NF-kappa B/genetics , NF-kappa B/immunology , NF-kappa B/metabolism , Mice , Neutrophils/immunology , Neutrophils/pathology , Mice, Knockout , Autoimmunity/genetics , Male , DNA/genetics , DNA/immunology , Female , Disease Models, Animal , Middle Aged
6.
Fish Shellfish Immunol ; 151: 109705, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38885801

ABSTRACT

DNA methylation, an essential epigenetic alteration, is tightly linked to a variety of biological processes, such as immune response. To identify the epigenetic regulatory mechanism in Pacific oyster (Crassostrea gigas), whole-genome bisulfite sequencing (WGBS) was conducted on C. gigas at 0 h, 6 h, and 48 h after infection with Vibrio alginolyticus. At 6 h and 48 h, a total of 11,502 and 14,196 differentially methylated regions (DMRs) were identified (p<0.05, FDR<0.001) compared to 0 h, respectively. Gene ontology (GO) analysis showed that differentially methylated genes (DMGs) were significantly enriched in various biological pathways including immunity, cytoskeleton, epigenetic modification, and metabolic processes. Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis showed that transcription machinery (ko03021) is one of the most important pathways. Integrated transcriptome and methylome analyses allowed the identification of 167 and 379 DMG-related DEGs at 6 h and 48 h, respectively. These genes were significantly enriched in immune-related pathways, including nuclear factor kappa B (NF-κB) signaling pathway (ko04064) and tumor necrosis factor (TNF) signaling pathway (ko04668). Interestingly, it's observed that the NF-κB pathway could be activated jointly by TNF Receptor Associated Factor 2 (TRAF2) and Baculoviral IAP Repeat Containing 3 (BIRC3, the homolog of human BIRC2) which were regulated by DNA methylation in response to the challenge posed by V. alginolyticus infection. Through this study, we provided insightful information about the epigenetic regulation of immunity-related genes in the C. gigas, which will be valuable for the understanding of the innate immune system modulation and defense mechanism against bacterial infection in invertebrates.


Subject(s)
Crassostrea , DNA Methylation , Epigenesis, Genetic , NF-kappa B , Signal Transduction , Vibrio alginolyticus , Animals , Crassostrea/genetics , Crassostrea/immunology , Crassostrea/microbiology , Vibrio alginolyticus/physiology , NF-kappa B/genetics , NF-kappa B/metabolism , NF-kappa B/immunology , Signal Transduction/genetics , Immunity, Innate/genetics , Vibrio Infections/immunology , Vibrio Infections/veterinary , Vibrio Infections/genetics
7.
Fish Shellfish Immunol ; 150: 109657, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38801842

ABSTRACT

Epimedin B (EB), a predominant compound found in Herba Epimedii, has been shown to be effective in the treatment of osteoporosis and peripheral neuropathy. However, the anti-inflammatory effect of EB has not yet been reported. The anti-inflammatory activity of EB was evaluated in a zebrafish inflammation model induced by copper sulfate (CuSO4) and tail cutting. Our findings demonstrated that EB effectively inhibited acute inflammation, mitigated the accumulation of reactive oxygen species (ROS), and ameliorated the neuroinflammation-associated impairment of locomotion in zebrafish. Moreover, EB regulates several genes related to the mitogen-activated protein kinase (MAPK)/nuclear factor-κB (NF-κB)/Nod-like receptor signalling pathways (mapk8b, src, mmp9, akt1, mapk14a, mapk14b, mapk1, egfra, map3k4, nfκb2, iκbαa, pycard, nlrp3 and caspase1) and inflammatory cytokine (stat6, arg1, irfɑ, stat1ɑ, il-1ß, il-4, il-6, il-8, cox-2, ptges, tnf-α and tgf-ß). Therefore, our findings indicate that EB could serve as a promising therapeutic candidate for treating inflammation.


Subject(s)
Anti-Inflammatory Agents , NF-kappa B , Signal Transduction , Zebrafish , Animals , Zebrafish/immunology , NF-kappa B/metabolism , NF-kappa B/genetics , NF-kappa B/immunology , Anti-Inflammatory Agents/pharmacology , Signal Transduction/drug effects , Inflammation/drug therapy , Inflammation/immunology , Fish Diseases/immunology , Mitogen-Activated Protein Kinases/metabolism , Mitogen-Activated Protein Kinases/genetics , Mitogen-Activated Protein Kinases/immunology , Flavonoids/pharmacology , Flavonoids/administration & dosage
8.
Zhen Ci Yan Jiu ; 49(5): 456-462, 2024 May 25.
Article in English, Chinese | MEDLINE | ID: mdl-38764116

ABSTRACT

OBJECTIVES: To observe effects of acupuncture at "Die E acupoint" on the protein expression levels of Toll-like receptor 4 (TLR4), myeloid differentiation factor 88 (MyD88), nuclear transcription factor κB (NF-κB), transcription factor T-bet (T-bet), and GATA-binding protein-3 (GATA-3) in the nasal mucosa and the serum contents of related inflammatory cytokines in rats with allergic rhinitis, so as to explore the mechanism of acupuncture in treating allergic rhinitis. METHODS: Twenty-four healthy SD rats were randomly divided into blank, model, acupuncture, and sham acupuncture groups, with 6 rats in each group. The rat model of allergic rhinitis was established by using ovalbumin induction. The rats in the acupuncture group received bilateral acupuncture at the "Die E acupoint" with a depth of 15-20 mm, while the rats in the sham acupuncture group received only sham acupuncture (light and shallow acupunture of the skin at the "Die E acupoint" ). Both interventions were performed once daily for a total of 6 days. Behavioral scores of rats in each group were recorded. Pathological changes of nasal mucosa were observed by H.E. staining. Serum contents of IgE, ovalbumin-specific IgE (OVA-sIgE), interferon(IFN)-γ, interleukin(IL)-4, IL-10 and IL-17 were measured by ELISA and the protein expression levels of T-bet, GATA-3, TLR4, MyD88 and NF-κB p65 in the nasal mucosa were detected by Western blot. RESULTS: After modeling, compared with the blank group, rats in the model group showed increased behavioral scores, serum IgE, OVA-sIgE, IL-4, and IL-17 contents, and nasal mucosal GATA-3, TLR4, MyD88, and NF-κB p65 protein expression levels (P<0.05), whereas the contents of serum IFN-γ, IL-10 and the protein expression level of T-bet in the nasal mucosa were decreased (P<0.05). Comparison between the EA and model groups showed that acupuncture intervention can decrease the behavioral scores of rats with allergic rhinitis, the contents of serum IgE, OVA-sIgE, IL-4, IL-17, and the protein expression levels of GATA-3, TLR4, MyD88, and NF-κB p65 in the nasal mucosa (P<0.05), and up-regulate the contents of serum IFN-γ, IL-10, and the nasal mucosal T-bet protein expression level. Sham acupuncture did not have a significant modulating effect on the above indicators. Inflammatory infiltration of nasal mucosa was seen in the model group and sham acupuncture, and the inflammatory reaction was milder in the acupuncture group. CONCLUSIONS: Acupuncture at "Die E acupoint" can alleviate the symptoms of allergic rhinitis and suppress the inflammation of nasal mucosa in rats, which may be related to inhibiting the TLR4/MyD88/NF-κB signaling and balancing the levels of cytokines of Th1/Th2 and Treg/Th17, and T-bet/GATA-3.


Subject(s)
Acupuncture Points , Acupuncture Therapy , Myeloid Differentiation Factor 88 , NF-kappa B , Rhinitis, Allergic , Toll-Like Receptor 4 , Animals , Female , Humans , Male , Rats , GATA3 Transcription Factor/metabolism , GATA3 Transcription Factor/genetics , GATA3 Transcription Factor/immunology , Immunoglobulin E/blood , Immunoglobulin E/immunology , Interleukin-4/genetics , Interleukin-4/immunology , Interleukin-4/metabolism , Myeloid Differentiation Factor 88/metabolism , Myeloid Differentiation Factor 88/genetics , Myeloid Differentiation Factor 88/immunology , NF-kappa B/metabolism , NF-kappa B/genetics , NF-kappa B/immunology , Rats, Sprague-Dawley , Rhinitis, Allergic/therapy , Rhinitis, Allergic/immunology , Rhinitis, Allergic/metabolism , Rhinitis, Allergic/genetics , Signal Transduction , Toll-Like Receptor 4/metabolism , Toll-Like Receptor 4/genetics , Toll-Like Receptor 4/immunology
9.
Int Immunopharmacol ; 136: 112347, 2024 Jul 30.
Article in English | MEDLINE | ID: mdl-38820966

ABSTRACT

Nucleotide-binding and oligomerization structural domain (NOD)-like receptors (NLRs) play an important role in innate immunity as cytoplasmic pattern recognition receptors (PRRs). Over the past decade, considerable progress has been made in understanding the mechanisms by which NLR family members regulate immune system function, particularly the formation of inflammasome and downstream inflammatory signals. However, recent studies have shown that some members of the NLRs, including Nlrp12, NLRX1, and NLRC3, are important in the negative regulation of inflammatory signaling and are involved in the development of various diseases, including inflammatory diseases and cancer. Based on this, in this review, we first summarize the interactions between canonical and non-canonical nuclear factor-κB (NF-κB) signaling pathways that are mainly involved in NLRs, then highlight the mechanisms by which the above NLRs negatively regulate inflammatory signaling responses as well as their roles in tumor progression, and finally summarize the synthetic and natural derivatives with therapeutic effects on these NLRs, which are considered as potential therapeutic agents for overcoming inflammatory diseases.


Subject(s)
Inflammation , NF-kappa B , Neoplasms , Signal Transduction , Humans , Neoplasms/immunology , Neoplasms/metabolism , Inflammation/immunology , Animals , NF-kappa B/metabolism , NF-kappa B/immunology , Inflammasomes/metabolism , Inflammasomes/immunology , NLR Proteins/metabolism , Immunity, Innate , Apoptosis Regulatory Proteins/metabolism , Apoptosis Regulatory Proteins/immunology , Intracellular Signaling Peptides and Proteins/metabolism , Intracellular Signaling Peptides and Proteins/immunology , Mitochondrial Proteins , Intercellular Signaling Peptides and Proteins
10.
Fish Shellfish Immunol ; 149: 109529, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38561069

ABSTRACT

This study was designed to investigate the potential neuronal damage mechanism of the okadaic acid (OA) in the brain tissues of zebrafish embryos by evaluating in terms of immunofluorescence of Nf KB, TLR-4, caspase 3, ERK ½, c-FOS and 8-OHdG signaling pathways. We also evaluated body malformations. For this purpose, zebrafish embryos were exposed to 0.5 µg/ml, 1 µg/ml and 2.5 µg/ml of OA for 5 days. After application, FITC/GFP labeled protein-specific antibodies were used in immunofluorescence assay for NfKB, TLR-4, caspase 3, ERK ½, c-FOS and 8-OHdG respectively. The results indicated that OA caused immunofluorescence positivity of NfKB, TLR-4, caspase 3, ERK ½, c-FOS and 8-OHdG in a dose-dependent manner in the brain tissues of zebrafish embryos. Pericardial edema (PE), nutrient sac edema (YSE) and body malformations, tail malformation, short tail and head malformation (BM) were detected in zebrafish embryos. These results suggest that OA induces neuronal damage by affecting the modulation of DNA damage, apoptotic, and inflammatory activities in the brain tissues of zebrafish embryos. The increase in signaling pathways shows that OA can cause damage in the structure and function of brain nerve cells. Our results provide a new basis for the comprehensive assessment of the neural damage of OA and will offer enable us to better understand molecular the mechanisms underlying the pathophysiology of OA toxicity.


Subject(s)
Brain , NF-kappa B , Okadaic Acid , Signal Transduction , Toll-Like Receptor 4 , Zebrafish , Animals , Zebrafish/immunology , Brain/drug effects , Toll-Like Receptor 4/genetics , Toll-Like Receptor 4/metabolism , Signal Transduction/drug effects , Okadaic Acid/toxicity , NF-kappa B/metabolism , NF-kappa B/immunology , 8-Hydroxy-2'-Deoxyguanosine , Caspase 3/metabolism , Caspase 3/genetics , Larva/drug effects , Proto-Oncogene Proteins c-fos/metabolism , Proto-Oncogene Proteins c-fos/genetics , Deoxyguanosine/analogs & derivatives , Deoxyguanosine/metabolism
11.
J Agric Food Chem ; 72(17): 9782-9794, 2024 May 01.
Article in English | MEDLINE | ID: mdl-38597360

ABSTRACT

Uncontrolled inflammation contributes significantly to the mortality in acute respiratory infections. Our previous research has demonstrated that maize bran feruloylated oligosaccharides (FOs) possess notable anti-inflammatory properties linked to the NF-kB pathway regulation. In this study, we clarified that the oral administration of FOs moderately inhibited H1N1 virus infection and reduced lung inflammation in influenza-infected mice by decreasing a wide spectrum of cytokines (IFN-α, IFN-ß, IL-6, IL-10, and IL-23) in the lungs. The mechanism involves FOs suppressing the transduction of the RIG-I/MAVS/TRAF3 signaling pathway, subsequently lowering the expression of NF-κB. In silico analysis suggests that FOs have a greater binding affinity for the RIG-I/MAVS signaling complex. This indicates that FOs have potential as promising targets for immune modulation. Moreover, in MAVS knockout mice, we confirmed that the anti-inflammatory function of FOs against influenza depends on MAVS. Comprehensive analysis using 16S rRNA gene sequencing and metabolite profiling techniques showed that FOs have the potential to restore immunity by modulating the gut microbiota. In conclusion, our study demonstrates that FOs are effective anti-inflammatory phytochemicals in inhibiting lung inflammation caused by influenza. This suggests that FOs could serve as a potential nutritional strategy for preventing the H1N1 virus infection and associated lung inflammation.


Subject(s)
DEAD Box Protein 58 , Influenza A Virus, H1N1 Subtype , Influenza, Human , Mice, Knockout , Oligosaccharides , Orthomyxoviridae Infections , Signal Transduction , TNF Receptor-Associated Factor 3 , Animals , Mice , Oligosaccharides/administration & dosage , Oligosaccharides/chemistry , Oligosaccharides/pharmacology , Orthomyxoviridae Infections/immunology , Orthomyxoviridae Infections/prevention & control , Orthomyxoviridae Infections/metabolism , Influenza A Virus, H1N1 Subtype/immunology , Humans , Signal Transduction/drug effects , Signal Transduction/immunology , Influenza, Human/immunology , Influenza, Human/prevention & control , Influenza, Human/metabolism , TNF Receptor-Associated Factor 3/genetics , TNF Receptor-Associated Factor 3/metabolism , TNF Receptor-Associated Factor 3/immunology , DEAD Box Protein 58/genetics , DEAD Box Protein 58/metabolism , DEAD Box Protein 58/immunology , Pneumonia/immunology , Pneumonia/prevention & control , Pneumonia/metabolism , Pneumonia/virology , Mice, Inbred C57BL , Lung/immunology , Lung/metabolism , Lung/drug effects , Lung/virology , Cytokines/metabolism , Cytokines/immunology , Cytokines/genetics , Female , NF-kappa B/immunology , NF-kappa B/genetics , NF-kappa B/metabolism , Anti-Inflammatory Agents/administration & dosage , Anti-Inflammatory Agents/pharmacology
12.
Clin Immunol ; 263: 110206, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38599263

ABSTRACT

Patients suffering from sepsis-induced acute lung injury (ALI) exhibit a high mortality rate, and their prognosis is closely associated with infiltration of neutrophils into the lungs. In this study, we found a significant elevation of CD64+ neutrophils, which highly expressed p75 neurotrophin receptor (p75NTR) in peripheral blood of mice and patients with sepsis-induced ALI. p75NTR+CD64+ neutrophils were also abundantly expressed in the lung of ALI mice induced by lipopolysaccharide. Conditional knock-out of the myeloid lineage's p75NTR gene improved the survival rates, attenuated lung tissue inflammation, reduced neutrophil infiltration and enhanced the phagocytic functions of CD64+ neutrophils. In vitro, p75NTR+CD64+ neutrophils exhibited an upregulation and compromised phagocytic activity in blood samples of ALI patients. Blocking p75NTR activity by soluble p75NTR extracellular domain peptide (p75ECD-Fc) boosted CD64+ neutrophils phagocytic activity and reduced inflammatory cytokine production via regulation of the NF-κB activity. The findings strongly indicate that p75NTR+CD64+ neutrophils are a novel pathogenic neutrophil subpopulation promoting sepsis-induced ALI.


Subject(s)
Acute Lung Injury , Mice, Inbred C57BL , Neutrophils , Phagocytosis , Receptors, IgG , Receptors, Nerve Growth Factor , Sepsis , Animals , Acute Lung Injury/immunology , Acute Lung Injury/etiology , Neutrophils/immunology , Neutrophils/metabolism , Sepsis/immunology , Sepsis/complications , Humans , Receptors, IgG/metabolism , Receptors, IgG/genetics , Receptors, IgG/immunology , Mice , Male , Phagocytosis/immunology , Receptors, Nerve Growth Factor/metabolism , Receptors, Nerve Growth Factor/genetics , Receptors, Nerve Growth Factor/immunology , Mice, Knockout , Lipopolysaccharides , Cytokines/metabolism , Cytokines/immunology , Lung/immunology , Lung/pathology , Female , NF-kappa B/metabolism , NF-kappa B/immunology , Nerve Tissue Proteins
13.
Fish Shellfish Immunol ; 149: 109550, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38593891

ABSTRACT

Signal transducing adapter molecule 2 (STAM2), a member of the Signal Transducing Adapter Molecule (STAM) family, is a protein with significant implications in diverse signaling pathways and endocytic membrane trafficking. However, the role of the STAM2, especially in fish, remains largely unknown. In this study, we discovered that STAM2 negatively regulates the NF-κB signaling pathway, and its inhibitory effect is enhanced upon LPS induction. Our study confirmed that STAM2 can enhance the degradation of myeloid differentiation primary-response protein 88 (MyD88), an upstream regulator of NF-κB pathway. Furthermore, the UIM domain of STAM2 is important for the inhibition of MyD88. Mechanistically, STAM2 inhibits the NF-κB signaling pathway by targeting the MyD88 autophagy pathway. In addition, we showed that STAM2 promotes the proliferation of Vibrio harveyi. In summary, our study reveals that STAM2 inhibits NF-κB signaling activation and mediates innate immunity in teleost via the autophagy pathway.


Subject(s)
Fish Diseases , Fish Proteins , Immunity, Innate , Myeloid Differentiation Factor 88 , NF-kappa B , Perciformes , Vibrio Infections , Vibrio , Animals , Adaptor Proteins, Signal Transducing/genetics , Adaptor Proteins, Signal Transducing/metabolism , Adaptor Proteins, Signal Transducing/immunology , Fish Diseases/immunology , Fish Proteins/genetics , Fish Proteins/immunology , Fish Proteins/metabolism , Gene Expression Regulation/immunology , Immunity, Innate/genetics , Lipopolysaccharides/pharmacology , Myeloid Differentiation Factor 88/genetics , Myeloid Differentiation Factor 88/metabolism , Myeloid Differentiation Factor 88/immunology , NF-kappa B/metabolism , NF-kappa B/immunology , NF-kappa B/genetics , Perciformes/immunology , Perciformes/genetics , Signal Transduction/immunology , Vibrio/physiology , Vibrio Infections/immunology , Vibrio Infections/veterinary
14.
Infect Immun ; 92(5): e0011324, 2024 May 07.
Article in English | MEDLINE | ID: mdl-38624215

ABSTRACT

Malaria, one of the major infectious diseases in the world, is caused by the Plasmodium parasite. Plasmodium antigens could modulate the inflammatory response by binding to macrophage membrane receptors. As an export protein on the infected erythrocyte membrane, Plasmodium surface-related antigen (SRA) participates in the erythrocyte invasion and regulates the immune response of the host. This study found that the F2 segment of P. yoelii SRA activated downstream MAPK and NF-κB signaling pathways by binding to CD68 on the surface of the macrophage membrane and regulating the inflammatory response. The anti-PySRA-F2 antibody can protect mice against P. yoelii, and the pro-inflammatory responses such as IL-1ß, TNF-α, and IL-6 after infection with P. yoelii are attenuated. These findings will be helpful for understanding the involvement of the pathogenic mechanism of malaria with the exported protein SRA.


Subject(s)
Antigens, CD , Antigens, Protozoan , Macrophages , Malaria , Plasmodium yoelii , Animals , Female , Humans , Mice , Antigens, CD/metabolism , Antigens, CD/immunology , Antigens, Differentiation, Myelomonocytic/metabolism , Antigens, Differentiation, Myelomonocytic/immunology , Antigens, Protozoan/immunology , Antigens, Protozoan/metabolism , Antigens, Surface/immunology , Antigens, Surface/metabolism , Cell Membrane/metabolism , Cell Membrane/immunology , Inflammation/immunology , Inflammation/metabolism , Macrophages/immunology , Macrophages/metabolism , Macrophages/parasitology , Malaria/immunology , Malaria/parasitology , NF-kappa B/metabolism , NF-kappa B/immunology , Plasmodium yoelii/immunology , Protein Binding , Signal Transduction
15.
Cytokine Growth Factor Rev ; 77: 15-29, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38548490

ABSTRACT

Innate immunity is not only the first line of host defense against microbial infections but is also crucial for the host responses against a variety of noxious stimuli. Z-DNA binding protein 1 (ZBP1) is a cytosolic nucleic acid sensor that can induce inflammatory cell death in both immune and nonimmune cells upon sensing of incursive virus-derived Z-form nucleic acids and self-nucleic acids via its Zα domain. Mechanistically, aberrantly expressed or activated ZBP1 induced by pathogens or noxious stimuli enables recruitment of TANK binding kinase 1 (TBK1), interferon regulatory factor 3 (IRF3), receptor-interacting serine/threonine-protein kinase 1 (RIPK1) and RIPK3 to drive type I interferon (IFN-I) responses and activation of nuclear factor kappa B (NF-κB) signaling. Meanwhile, ZBP1 promotes the assembly of ZBP1- and absent in melanoma 2 (AIM2)-PANoptosome, which ultimately triggers PANoptosis through caspase 3-mediated apoptosis, mixed lineage kinase domain like pseudokinase (MLKL)-mediated necroptosis, and gasdermin D (GSDMD)-mediated pyroptosis. In response to damaged mitochondrial DNA, ZBP1 can interact with cyclic GMP-AMP synthase to augment IFN-I responses but inhibits toll like receptor 9-mediated inflammatory responses. This review summarizes the structure and expression pattern of ZBP1, discusses its roles in human diseases through immune-dependent (e.g., the production of IFN-I and pro-inflammatory cytokines) and -independent (e.g., the activation of cell death) functions, and highlights the attractive prospect of manipulating ZBP1 as a promising therapeutic target in diseases.


Subject(s)
Cell Death , Immunity, Innate , Inflammation , RNA-Binding Proteins , Humans , Animals , Inflammation/immunology , Cell Death/immunology , RNA-Binding Proteins/immunology , RNA-Binding Proteins/metabolism , Signal Transduction/immunology , Receptor-Interacting Protein Serine-Threonine Kinases/immunology , Receptor-Interacting Protein Serine-Threonine Kinases/metabolism , Necroptosis/immunology , Interferon Type I/immunology , Interferon Type I/metabolism , NF-kappa B/metabolism , NF-kappa B/immunology , Interferon Regulatory Factor-3/metabolism , Interferon Regulatory Factor-3/immunology , Apoptosis
16.
J Biol Chem ; 300(4): 107200, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38508315

ABSTRACT

Interferon (IFN) regulatory factors (IRF) are key transcription factors in cellular antiviral responses. IRF7, a virus-inducible IRF, expressed primarily in myeloid cells, is required for transcriptional induction of interferon α and antiviral genes. IRF7 is activated by virus-induced phosphorylation in the cytoplasm, leading to its translocation to the nucleus for transcriptional activity. Here, we revealed a nontranscriptional activity of IRF7 contributing to its antiviral functions. IRF7 interacted with the pro-inflammatory transcription factor NF-κB-p65 and inhibited the induction of inflammatory target genes. Using knockdown, knockout, and overexpression strategies, we demonstrated that IRF7 inhibited NF-κB-dependent inflammatory target genes, induced by virus infection or toll-like receptor stimulation. A mutant IRF7, defective in transcriptional activity, interacted with NF-κB-p65 and suppressed NF-κB-induced gene expression. A single-action IRF7 mutant, active in anti-inflammatory function, but defective in transcriptional activity, efficiently suppressed Sendai virus and murine hepatitis virus replication. We, therefore, uncovered an anti-inflammatory function for IRF7, independent of transcriptional activity, contributing to the antiviral response of IRF7.


Subject(s)
Interferon Regulatory Factor-7 , NF-kappa B , Animals , Humans , Mice , HEK293 Cells , Inflammation/genetics , Interferon Regulatory Factor-7/genetics , Interferon Regulatory Factor-7/immunology , NF-kappa B/genetics , NF-kappa B/immunology , Sendai virus/physiology , Transcription Factor RelA/genetics , Transcription Factor RelA/immunology , Virus Replication , Mutation , Gene Expression Regulation/genetics , Murine hepatitis virus/physiology , Coronavirus Infections/immunology , Respirovirus Infections/immunology
17.
BMC Vet Res ; 19(1): 216, 2023 Oct 19.
Article in English | MEDLINE | ID: mdl-37858196

ABSTRACT

BACKGROUND: Cryptosporidium parvum is a protozoan parasite of medical and veterinary importance that causes neonatal diarrhea in many vertebrate hosts. In this study, we evaluated the efficacy of an affinity-purified antigen as a C. parvum vaccine candidate using ileal and liver tissues of experimentally infected neonatal mice by immunohistochemical profiling and immune scoring of CD4+, CD8+, Caspase-3, and nuclear factor kappa B (NF-κB). This vaccine was prepared from the C. parvum oocysts antigen using immune affinity chromatography with cyanogen bromide-activated Sepharose-4B beads. METHODS: Thirty neonatal mice were divided into three groups (10 mice/group): (1) non-immunized non-infected, (2) non-immunized infected (using gastric tubes with a single dose of 1 × 105 of C. parvum oocysts in 250 µl PBS solution 1 h before a meal) and (3) immunized (twice with 40 µg/kg of purified C. parvum antigen at 2-week intervals and then infected with 1 × 105 C. parvum oocysts simultaneously with the second group). After euthanizing the animals on the 10th day, post-infection, their ileal and liver tissues were collected and prepared for immunohistochemistry (IHC) staining to detect CD4+, CD8+, Caspase-3, and NF-κB levels, which are indicators for T helper cells, cytotoxic T cells, apoptosis, and inflammation, respectively. RESULTS: The IHC results showed that CD4+, CD8+, Caspase-3, and NF-κB expression varied significantly (P < 0.001) in both organs in all the groups. We also recorded high CD4+ levels and low CD8+ expression in the non-immunized non-infected mice tissues, while the opposite was observed in the non-immunized infected mice tissues. In the immunized infected mice, the CD4+ level was higher than CD8 + in both organs. While the Caspase-3 levels were higher in the ileal tissue of non-immunized infected than immunized infected mice ileal tissues, the reverse was seen in the liver tissues of both groups. Furthermore, NF-κB expression was higher in the liver tissues of non-immunized infected mice than in immunized infected mice tissues. Therefore, the IHC results and immune-scoring program revealed a significant difference (P < 0.001) in the CD4+, CD8+, Caspase-3, and NF-κB expression levels in both ileal and liver tissues of all mice groups, which might be necessary for immunomodulation in these tissues. CONCLUSIONS: The improvement observed in the immunized infected mice suggests that this vaccine candidate might protect against cryptosporidiosis.


Subject(s)
CD4 Antigens , CD8 Antigens , Caspase 3 , Cryptosporidiosis , NF-kappa B , Protozoan Vaccines , Animals , Mice , Caspase 3/biosynthesis , Caspase 3/immunology , CD4 Antigens/biosynthesis , CD4 Antigens/immunology , CD4-Positive T-Lymphocytes/immunology , CD8 Antigens/biosynthesis , CD8 Antigens/immunology , CD8-Positive T-Lymphocytes/immunology , Cryptosporidiosis/prevention & control , Cryptosporidiosis/parasitology , Cryptosporidium , Cryptosporidium parvum/immunology , Immunohistochemistry , NF-kappa B/biosynthesis , NF-kappa B/immunology , Protozoan Vaccines/therapeutic use , Vaccines
18.
mSystems ; 8(4): e0005223, 2023 08 31.
Article in English | MEDLINE | ID: mdl-37439558

ABSTRACT

Tuberculosis (TB), caused by the pathogenic bacterium Mycobacterium tuberculosis (Mtb), is a global health threat. Targeting host pathways that modulate protective or harmful components of inflammation has been proposed as a therapeutic strategy that could aid sterilization or mitigate TB-associated permanent tissue damage. In purified form, many Mtb components can activate innate immune pathways. However, knowledge of the pathways that contribute most to the observed response to live Mtb is incomplete, limiting the possibility of precise intervention. We took a systematic, unbiased approach to define the pathways that drive the earliest immune response to Mtb. Using a macrophage model of infection, we compared the bulk transcriptional response to infection with the response to a panel of Mtb-derived putative innate immune ligands. We identified two axes of response: an NF-kB-dependent response similarly elicited by all Mtb pathogen-associated molecular patterns (PAMPs) and a type I interferon axis unique to cells infected with live Mtb. Consistent with growing literature data pointing to TLR2 as a dominant Mtb-associated PAMP, the TLR2 ligand PIM6 most closely approximated the NF-kB-dependent response to the intact bacterium. Quantitatively, the macrophage response to Mtb was slower and weaker than the response to purified PIM6. On a subpopulation level, the TLR2-dependent response was heterogeneously induced, with only a subset of infected cells expressing key inflammatory genes known to contribute to the control of infection. Despite potential redundancies in Mtb ligand/innate immune receptor interactions during in vivo infection, loss of the TLR2/PIM6 interaction impacted the cellular composition of both the innate and adaptive compartments. IMPORTANCE Tuberculosis (TB) is a leading cause of death globally. Drug resistance is outpacing new antibiotic discovery, and even after successful treatment, individuals are often left with permanent lung damage from the negative consequences of inflammation. Targeting host inflammatory pathways has been proposed as an approach that could either improve sterilization or improve post-treatment lung health. However, our understanding of the inflammatory pathways triggered by Mycobacterium tuberculosis (Mtb) in infected cells and lungs is incomplete, in part because of the complex array of potential molecular interactions between bacterium and host. Here, we take an unbiased approach to identify the pathways most central to the host response to Mtb. We examine how individual pathways are triggered differently by purified Mtb products or infection with the live bacterium and consider how these pathways inform the emergence of subpopulation responses in cell culture and in infected mice. Understanding how individual interactions and immune pathways contribute to inflammation in TB opens the door to the possibility of developing precise therapeutic interventions.


Subject(s)
Host-Pathogen Interactions , Macrophages , Mycobacterium tuberculosis , Toll-Like Receptor 2 , Tuberculosis , Cells, Cultured , Macrophages/immunology , Macrophages/microbiology , Animals , Mice , Tuberculosis/immunology , Pathogen-Associated Molecular Pattern Molecules , Interferon Type I/immunology , Microbial Viability , NF-kappa B/immunology , Toll-Like Receptor 2/immunology , Cellular Microenvironment/immunology , Host-Pathogen Interactions/immunology
19.
Biosci Biotechnol Biochem ; 87(8): 907-915, 2023 Jul 24.
Article in English | MEDLINE | ID: mdl-37169920

ABSTRACT

We characterized the membrane vesicle fraction (RD-MV fraction) from bacterial strain RD055328, which is related to members of the genus Companilactobacillus and Lactiplantibacillus plantarum. RD-MVs and glyceraldehyde 3-phosphate dehydrogenase (GAPDH) were detected in the RD-MV fraction. Immunoglobulin A (IgA) was produced by Peyer's patch cells following the addition of the RD-MV fraction. In the presence of the RD-MV fraction, RAW264 cells produced the pro-inflammatory cytokine IL-6. Recombinant GAPDH probably induced the production of IL-6 by RAW264 cells via superficial toll-like receptor 2 (TLR2) recognition. A confocal laser scanning microscopy image analysis indicated that RD-MVs and GAPDH were taken up by RAW264 cells. GAPDH wrapped around RAW264 cells. We suggest that GAPDH from strain RD055328 enhanced the production of IgA by acquired immune cells via the production of IL-6 by innate immune cells through TLR2 signal transduction.


Subject(s)
Bacterial Proteins , Glyceraldehyde-3-Phosphate Dehydrogenase (Phosphorylating) , Lactobacillaceae , Signal Transduction , Toll-Like Receptor 2 , RAW 264.7 Cells , Signal Transduction/drug effects , Toll-Like Receptor 2/immunology , Recombinant Proteins/genetics , Recombinant Proteins/isolation & purification , Recombinant Proteins/pharmacology , Immunoglobulin A/immunology , Interleukin-6/immunology , Glyceraldehyde-3-Phosphate Dehydrogenase (Phosphorylating)/genetics , Glyceraldehyde-3-Phosphate Dehydrogenase (Phosphorylating)/isolation & purification , Glyceraldehyde-3-Phosphate Dehydrogenase (Phosphorylating)/pharmacology , Adjuvants, Immunologic/genetics , Adjuvants, Immunologic/isolation & purification , Adjuvants, Immunologic/pharmacology , Animals , Mice , Lactobacillaceae/classification , Lactobacillaceae/enzymology , Lactobacillaceae/genetics , Lactobacillaceae/isolation & purification , Bacterial Proteins/genetics , Bacterial Proteins/pharmacology , NF-kappa B/immunology , Transcriptional Activation/drug effects
20.
Angiogenesis ; 26(2): 265-278, 2023 05.
Article in English | MEDLINE | ID: mdl-36403190

ABSTRACT

Overcoming vascular immunosuppression: lack of endothelial cell (EC) responsiveness to inflammatory stimuli in the proangiogenic environment of tumors, is essential for successful cancer immunotherapy. The mechanisms through which Vascular Endothelial Growth Factor A(VEGF-A) modulates tumor EC response to exclude T-cells are not well understood. Here, we demonstrate that EC-specific deletion of small GTPase Rap1B, previously implicated in normal angiogenesis, restricts tumor growth in endothelial-specific Rap1B-knockout (Rap1BiΔEC) mice. EC-specific Rap1B deletion inhibits angiogenesis, but also leads to an altered tumor microenvironment with increased recruitment of leukocytes and increased activity of tumor CD8+ T-cells. Depletion of CD8+ T-cells restored tumor growth in Rap1BiΔEC mice. Mechanistically, global transcriptome and functional analyses indicated upregulation of signaling by a tumor cytokine, TNF-α, and increased NF-κB transcription in Rap1B-deficient ECs. Rap1B-deficiency led to elevated proinflammatory chemokine and Cell Adhesion Molecules (CAMs) expression in TNF-α stimulated ECs. Importantly, CAM expression was elevated in tumor ECs from Rap1BiΔEC mice. Significantly, Rap1B deletion prevented VEGF-A-induced immunosuppressive downregulation of CAM expression, demonstrating that Rap1B is essential for VEGF-A-suppressive signaling. Thus, our studies identify a novel endothelial-endogenous mechanism underlying VEGF-A-dependent desensitization of EC to proinflammatory stimuli. Significantly, they identify EC Rap1B as a potential novel vascular target in cancer immunotherapy.


Subject(s)
CD8-Positive T-Lymphocytes , Endothelial Cells , Neoplasms , rap GTP-Binding Proteins , Animals , Mice , CD8-Positive T-Lymphocytes/immunology , Immunosuppression Therapy , Neoplasms/blood supply , Neoplasms/genetics , Neoplasms/immunology , Tumor Microenvironment/genetics , Tumor Microenvironment/immunology , Tumor Necrosis Factor-alpha/genetics , Tumor Necrosis Factor-alpha/immunology , Vascular Endothelial Growth Factor A/genetics , Vascular Endothelial Growth Factor A/immunology , Endothelial Cells/immunology , Endothelial Cells/physiology , NF-kappa B/genetics , NF-kappa B/immunology , rap GTP-Binding Proteins/genetics , rap GTP-Binding Proteins/immunology
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