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1.
Infect Immun ; 92(5): e0000624, 2024 May 07.
Article En | MEDLINE | ID: mdl-38629806

Enterococci are common commensal bacteria that colonize the gastrointestinal tracts of most mammals, including humans. Importantly, these bacteria are one of the leading causes of nosocomial infections. This study examined the role of colonic macrophages in facilitating Enterococcus faecalis infections in mice. We determined that depletion of colonic phagocytes resulted in the reduction of E. faecalis dissemination to the gut-draining mesenteric lymph nodes. Furthermore, we established that trafficking of monocyte-derived CX3CR1-expressing macrophages contributed to E. faecalis dissemination in a manner that was not reliant on CCR7, the conventional receptor involved in lymphatic migration. Finally, we showed that E. faecalis mutants with impaired intracellular survival exhibited reduced dissemination, suggesting that E. faecalis can exploit host immune cell migration to disseminate systemically and cause disease. Our findings indicate that modulation of macrophage trafficking in the context of antibiotic therapy could serve as a novel approach for preventing or treating opportunistic infections by disseminating enteric pathobionts like E. faecalis.


CX3C Chemokine Receptor 1 , Colon , Enterococcus faecalis , Macrophages , Receptors, CCR2 , Receptors, Chemokine , Animals , CX3C Chemokine Receptor 1/metabolism , CX3C Chemokine Receptor 1/genetics , Macrophages/microbiology , Macrophages/immunology , Mice , Colon/microbiology , Colon/immunology , Receptors, CCR2/metabolism , Receptors, CCR2/genetics , Receptors, Chemokine/metabolism , Receptors, Chemokine/genetics , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Mice, Inbred C57BL , Lymph Nodes/microbiology , Lymph Nodes/immunology , Receptors, CCR7/metabolism , Receptors, CCR7/genetics
2.
Nat Commun ; 12(1): 7172, 2021 12 09.
Article En | MEDLINE | ID: mdl-34887405

Complement receptor of immunoglobulin superfamily (CRIg) is expressed on liver macrophages and directly binds complement component C3b or Gram-positive bacteria to mediate phagocytosis. CRIg plays important roles in several immune-mediated diseases, but it is not clear how its pathogen recognition and phagocytic functions maintain homeostasis and prevent disease. We previously associated cytolysin-positive Enterococcus faecalis with severity of alcohol-related liver disease. Here, we demonstrate that CRIg is reduced in liver tissues from patients with alcohol-related liver disease. CRIg-deficient mice developed more severe ethanol-induced liver disease than wild-type mice; disease severity was reduced with loss of toll-like receptor 2. CRIg-deficient mice were less efficient than wild-type mice at clearing Gram-positive bacteria such as Enterococcus faecalis that had translocated from gut to liver. Administration of the soluble extracellular domain CRIg-Ig protein protected mice from ethanol-induced steatohepatitis. Our findings indicate that ethanol impairs hepatic clearance of translocated pathobionts, via decreased hepatic CRIg, which facilitates progression of liver disease.


Enterococcus faecalis/immunology , Gram-Positive Bacterial Infections/immunology , Liver Diseases, Alcoholic/immunology , Macrophages/immunology , Receptors, Complement 3b/immunology , Receptors, Complement/immunology , Animals , Bacterial Translocation , Complement C3b/immunology , Enterococcus faecalis/physiology , Ethanol/adverse effects , Female , Gastrointestinal Tract/microbiology , Gram-Positive Bacterial Infections/genetics , Gram-Positive Bacterial Infections/microbiology , Humans , Liver/drug effects , Liver/immunology , Liver/microbiology , Liver Diseases, Alcoholic/etiology , Liver Diseases, Alcoholic/genetics , Liver Diseases, Alcoholic/microbiology , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Receptors, Complement/deficiency , Receptors, Complement/genetics , Receptors, Complement 3b/genetics
3.
Front Immunol ; 12: 733266, 2021.
Article En | MEDLINE | ID: mdl-34880856

Renibacterium salmoninarum is a Gram-positive, intracellular pathogen that causes Bacterial Kidney Disease (BKD) in several fish species in freshwater and seawater. Lumpfish (Cyclopterus lumpus) is utilized as a cleaner fish to biocontrol sea lice infestation in Atlantic salmon (Salmo salar) farms. Atlantic salmon is susceptible to R. salmoninarum, and it can transfer the infection to other fish species. Although BKD outbreaks have not been reported in lumpfish, its susceptibility and immune response to R. salmoninarum is unknown. In this study, we evaluated the susceptibility and immune response of lumpfish to R. salmoninarum infection. Groups of lumpfish were intraperitoneally (i.p.) injected with either R. salmoninarum (1×107, 1×108, or 1×109 cells dose-1) or PBS (control). R. salmoninarum infection kinetics and mortality were followed for 98 days post-infection (dpi). Transcript expression levels of 33 immune-relevant genes were measured in head kidney (n = 6) of fish infected with 1×109 cells/dose and compared to the control at 28 and 98 dpi. Infected lumpfish displayed characteristic clinical signs of BKD. Lumpfish infected with high, medium, and low doses had a survival rate of 65%, 93%, and 95%, respectively. Mortality in the high-dose infected group stabilized after 50 dpi, but R. salmoninarum persisted in the fish tissues until 98 dpi. Cytokines (il1ß, il8a, il8b), pattern recognition receptors (tlr5a), interferon-induced effectors (rsad2, mxa, mxb, mxc), and iron regulation (hamp) and acute phase reactant (saa5) related genes were up-regulated at 28 dpi. In contrast, cell-mediated adaptive immunity-related genes (cd4a, cd4b, ly6g6f, cd8a, cd74) were down-regulated at 28 dpi, revealing the immune suppressive nature of R. salmoninarum. However, significant upregulation of cd74 at 98 dpi suggests induction of cell-mediated immune response. This study showed that R. salmoninarum infected lumpfish in a similar fashion to salmonid fish species and caused a chronic infection, enhancing cell-mediated adaptive immune response.


Fish Diseases/immunology , Gram-Positive Bacterial Infections/immunology , Kidney Diseases/immunology , Perciformes/microbiology , Adaptive Immunity/genetics , Animals , Bacterial Load , Bacteriological Techniques , Chronic Disease , Disease Susceptibility , Fish Diseases/microbiology , Gene Expression Profiling , Gene Expression Regulation, Bacterial , Gene Ontology , Gram-Positive Bacterial Infections/genetics , Gram-Positive Bacterial Infections/microbiology , Head Kidney/immunology , Head Kidney/metabolism , Host-Pathogen Interactions/genetics , Host-Pathogen Interactions/immunology , Immunity, Cellular/genetics , Kidney Diseases/genetics , Kidney Diseases/microbiology , Perciformes/genetics , Perciformes/immunology , Real-Time Polymerase Chain Reaction , Renibacterium , Species Specificity , Specific Pathogen-Free Organisms
4.
Front Immunol ; 12: 740540, 2021.
Article En | MEDLINE | ID: mdl-34650562

Acne is a multifactorial disease driven by physiological changes occurring during puberty in the pilosebaceous unit (PSU) that leads to sebum overproduction and a dysbiosis involving notably Cutibacterium acnes. These changes in the PSU microenvironment lead to a shift from a homeostatic to an inflammatory state. Indeed, immunohistochemical analyses have revealed that inflammation and lymphocyte infiltration can be detected even in the infraclinical acneic stages, highlighting the importance of the early stages of the disease. In this study, we utilized a robust multi-pronged approach that included flow cytometry, confocal microscopy, and bioinformatics to comprehensively characterize the evolution of the infiltrating and resident immune cell populations in acneic lesions, beginning in the early stages of their development. Using a discovery cohort of 15 patients, we demonstrated that the composition of immune cell infiltrate is highly dynamic in nature, with the relative abundance of different cell types changing significantly as a function of clinical lesion stage. Within the stages examined, we identified a large population of CD69+ CD4+ T cells, several populations of activated antigen presenting cells, and activated mast cells producing IL-17. IL-17+ mast cells were preferentially located in CD4+ T cell rich areas and we showed that activated CD4+ T cells license mast cells to produce IL-17. Our study reveals that mast cells are the main IL-17 producers in the early stage of acne, underlying the importance of targeting the IL-17+ mast cell/T helper cell axis in therapeutic approaches.


Acne Vulgaris/immunology , Gram-Positive Bacterial Infections/immunology , Mast Cells/immunology , Propionibacterium acnes/physiology , Th17 Cells/immunology , Antigens, CD/metabolism , Antigens, Differentiation, T-Lymphocyte/metabolism , Cell Line , Computational Biology , Disease Progression , Flow Cytometry , Humans , Immunologic Memory , Interleukin-17/metabolism , Lectins, C-Type/metabolism , Lymphocyte Activation , Skin/pathology
5.
Diagn Microbiol Infect Dis ; 101(4): 115534, 2021 Dec.
Article En | MEDLINE | ID: mdl-34601446

Bloodstream infection with Bacillus cereus/thuringiensis can be life threatening, particularly in patients who are severely immunocompromised. In this report we describe a case that progressed from asymptomatic to fatal over approximately 5 hours despite extensive resuscitation efforts. We identify the pathogen and assemble its genome, in which we find genes for toxins that may have contributed to the precipitous demise. In the context of this and other cases we discuss the possible indication for rapid appropriate antibiotic administration and potentially antitoxin treatment or toxin removal in fulminant illness in immunocompromised patients.


Bacillus cereus/pathogenicity , Bacillus thuringiensis/pathogenicity , Bacillus cereus/genetics , Bacillus cereus/isolation & purification , Bacillus thuringiensis/genetics , Bacillus thuringiensis/isolation & purification , Bacterial Toxins/genetics , Child, Preschool , Fatal Outcome , Female , Genome, Bacterial/genetics , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Gram-Positive Bacterial Infections/pathology , Humans , Immunocompromised Host , Sepsis/immunology , Sepsis/microbiology , Sepsis/pathology
6.
Int J Mol Sci ; 22(16)2021 Aug 05.
Article En | MEDLINE | ID: mdl-34445148

The gram-positive pathogenic bacterium Clavibacter michiganensis subsp. michiganensis (Cmm) causes bacterial canker disease in tomato, affecting crop yield and fruit quality. To understand how tomato plants respond, the dynamic expression profile of host genes was analyzed upon Cmm infection. Symptoms of bacterial canker became evident from the third day. As the disease progressed, the bacterial population increased in planta, reaching the highest level at six days and remained constant till the twelfth day post inoculation. These two time points were selected for transcriptomics. A progressive down-regulation of key genes encoding for components of the photosynthetic apparatus was observed. Two temporally separated defense responses were observed, which were to an extent interdependent. During the primary response, genes of the phenylpropanoid pathway were diverted towards the synthesis of monolignols away from S-lignin. In dicots, lignin polymers mainly consist of G- and S-units, playing an important role in defense. The twist towards G-lignin enrichment is consistent with previous findings, highlighting a response to generate an early protective barrier and to achieve a tight interplay between lignin recomposition and the primary defense response mechanism. Upon progression of Cmm infection, the temporal deactivation of phenylpropanoids coincided with the upregulation of genes that belong in a secondary response mechanism, supporting an elegant reprogramming of the host transcriptome to establish a robust defense apparatus and suppress pathogen invasion. This high-throughput analysis reveals a dynamic reorganization of plant defense mechanisms upon bacterial infection to implement an array of barriers preventing pathogen invasion and spread.


Down-Regulation/genetics , Photosynthesis/genetics , Plant Immunity/genetics , Plant Immunity/immunology , Solanum lycopersicum/genetics , Solanum lycopersicum/microbiology , Clavibacter/genetics , Gram-Positive Bacterial Infections/genetics , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Host-Pathogen Interactions/genetics , Host-Pathogen Interactions/immunology , Photosynthesis/immunology , Plant Diseases/genetics , Plant Diseases/immunology , Plant Diseases/microbiology , Transcriptome/genetics , Up-Regulation/genetics
7.
Fish Shellfish Immunol ; 117: 253-261, 2021 Oct.
Article En | MEDLINE | ID: mdl-34418557

The sea urchin Lytechinus variegatus is considered a good candidate for aquaculture, but bacterial diseases are a major challenge in culture conditions. The innate immunological defenses of L. variegatus to bacterial challenges were assessed through hematology parameters, in vitro phagocytosis, lysozyme activity and total plasma protein concentrations in cell-free coelomic fluid. Adult sea urchins were inoculated with Microccocus lysodeikticus, Escherichia coli and Vibrio parahaemolyticus in the cavity coelomic. Filtrated and sterile seawater (FSW) injected and non-injected sea urchins were used as control groups. Righting time, external aspects and behavior of sea urchins were evaluated. Twenty-four hours post-inoculation, we found an increase in the population of colorless spherule cells (CLS), phagocytosis, and humoral responses in sea urchins challenged by bacterial inoculations. Righting time was not affected by the treatments and apparent external signs of disease were not observed at least during 96h post-inoculation. The immunological system of L. variegatus quickly eliminated pathogenic microorganisms. CLS and lysozyme activity cooperate in the immune defenses of L. variegatus, showing an extraordinary efficiency for adjusting the immune defenses under stress caused by microbes. We recommend that the cellular and humoral markers serve as routine tests to monitor health status in sea urchins.


Lytechinus/immunology , Animals , Escherichia coli , Escherichia coli Infections/immunology , Escherichia coli Infections/veterinary , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/veterinary , Immunity, Innate , Lytechinus/cytology , Lytechinus/microbiology , Micrococcus , Muramidase/immunology , Phagocytosis , Vibrio Infections/immunology , Vibrio Infections/veterinary , Vibrio parahaemolyticus
8.
Vet Res ; 52(1): 103, 2021 Jul 08.
Article En | MEDLINE | ID: mdl-34238364

Nocardioform placentitis (NP) continues to result in episodic outbreaks of abortion and preterm birth in mares and remains a poorly understood disease. The objective of this study was to characterize the transcriptome of the chorioallantois (CA) of mares with NP. The CA were collected from mares with confirmed NP based upon histopathology, microbiological culture and PCR for Amycolatopsis spp. Samples were collected from the margin of the NP lesion (NPL, n = 4) and grossly normal region (NPN, n = 4). Additionally, CA samples were collected from normal postpartum mares (Control; CRL, n = 4). Transcriptome analysis identified 2892 differentially expressed genes (DEGs) in NPL vs. CRL and 2450 DEGs in NPL vs. NPN. Functional genomics analysis elucidated that inflammatory signaling, toll-like receptor signaling, inflammasome activation, chemotaxis, and apoptosis pathways are involved in NP. The increased leukocytic infiltration in NPL was associated with the upregulation of matrix metalloproteinase (MMP1, MMP3, and MMP8) and apoptosis-related genes, such as caspases (CASP3 and CASP7), which could explain placental separation associated with NP. Also, NP was associated with downregulation of several placenta-regulatory genes (ABCG2, GCM1, EPAS1, and NR3C1), angiogenesis-related genes (VEGFA, FLT1, KDR, and ANGPT2), and glucose transporter coding genes (GLUT1, GLUT10, and GLUT12), as well as upregulation of hypoxia-related genes (HIF1A and EGLN3), which could elucidate placental insufficiency accompanying NP. In conclusion, our findings revealed for the first time, the key regulators and mechanisms underlying placental inflammation, separation, and insufficiency during NP, which might lead to the development of efficacious therapies or diagnostic aids by targeting the key molecular pathways.


Chorioamnionitis/veterinary , Gram-Positive Bacterial Infections/veterinary , Horse Diseases/immunology , Transcriptome , Actinobacteria/isolation & purification , Amycolatopsis/isolation & purification , Animals , Chorioamnionitis/immunology , Chorioamnionitis/microbiology , Female , Gene Expression Profiling/veterinary , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Horse Diseases/microbiology , Horses , Pregnancy
9.
Front Immunol ; 12: 670205, 2021.
Article En | MEDLINE | ID: mdl-34248949

Mast cells are potent immune sensors of the tissue microenvironment. Within seconds of activation, they release various preformed biologically active products and initiate the process of de novo synthesis of cytokines, chemokines, and other inflammatory mediators. This process is regulated at multiple levels. Besides the extensively studied IgE and IgG receptors, toll-like receptors, MRGPR, and other protein receptor signaling pathways, there is a critical activation pathway based on cholesterol-dependent, pore-forming cytolytic exotoxins produced by Gram-positive bacterial pathogens. This pathway is initiated by binding the exotoxins to the cholesterol-rich membrane, followed by their dimerization, multimerization, pre-pore formation, and pore formation. At low sublytic concentrations, the exotoxins induce mast cell activation, including degranulation, intracellular calcium concentration changes, and transcriptional activation, resulting in production of cytokines and other inflammatory mediators. Higher toxin concentrations lead to cell death. Similar activation events are observed when mast cells are exposed to sublytic concentrations of saponins or some other compounds interfering with the membrane integrity. We review the molecular mechanisms of mast cell activation by pore-forming bacterial exotoxins, and other compounds inducing cholesterol-dependent plasma membrane perturbations. We discuss the importance of these signaling pathways in innate and acquired immunity.


Cell Membrane/metabolism , Cholesterol/metabolism , Cytotoxins/metabolism , Gram-Positive Bacteria/metabolism , Gram-Positive Bacterial Infections/metabolism , Mast Cells/metabolism , Animals , Calcium Signaling , Cell Death , Cell Degranulation , Cell Membrane/immunology , Cell Membrane/microbiology , Cell Membrane/pathology , Cellular Microenvironment , Cytokines/metabolism , Gram-Positive Bacteria/immunology , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Gram-Positive Bacterial Infections/pathology , Host-Pathogen Interactions , Humans , Inflammation Mediators/metabolism , Mast Cells/immunology , Mast Cells/microbiology , Mast Cells/pathology
11.
Dev Comp Immunol ; 124: 104183, 2021 11.
Article En | MEDLINE | ID: mdl-34174242

The Toll signaling pathway is highly conserved from insects to mammals. Drosophila is a model species that is commonly used to study innate immunity. Although many studies have assessed protein-coding genes that regulate the Toll pathway, it is unclear whether long noncoding RNAs (lncRNAs) play regulatory roles in the Toll pathway. Here, we evaluated the expression of the lncRNA CR46018 in Drosophila. Our results showed that this lncRNA was significantly overexpressed after infection of Drosophila with Micrococcus luteus. A CR46018-overexpressing Drosophila strain was then constructed; we expected that CR46018 overexpression would enhance the expression of various antimicrobial peptides downstream of the Toll pathway, regardless of infection with M. luteus. RNA-seq analysis of CR46018-overexpressing Drosophila after infection with M. luteus showed that upregulated genes were mainly enriched in Toll and Imd signaling pathways. Moreover, bioinformatics predictions and RNA-immunoprecipitation experiments showed that CR46018 interacted with the transcription factors Dif and Dorsal to enhance the Toll pathway. During gram-positive bacterial infection, flies overexpressing CR46018 showed favorable survival compared with flies in the control group. Overall, our current work not only reveals a new immune regulatory factor, lncRNA-CR46018, and explores its potential regulatory model, but also provides a new perspective for the effect of immune disorders on the survival of Drosophila melanogaster.


DNA-Binding Proteins/genetics , Drosophila Proteins/genetics , Drosophila melanogaster/immunology , Nuclear Proteins/genetics , Phosphoproteins/genetics , RNA, Long Noncoding/genetics , Toll-Like Receptors/immunology , Transcription Factors/genetics , Animals , Animals, Genetically Modified , Drosophila Proteins/immunology , Drosophila melanogaster/genetics , Drosophila melanogaster/microbiology , Gram-Positive Bacterial Infections/genetics , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Immunity, Innate , Micrococcus luteus/physiology , RNA, Long Noncoding/immunology , Signal Transduction/genetics , Signal Transduction/immunology , Toll-Like Receptors/genetics
12.
Front Immunol ; 12: 618561, 2021.
Article En | MEDLINE | ID: mdl-33936034

The p38 regulated/activated protein kinase (PRAK) is a protein kinase downstream of p38MAPK. The present study investigated its function in the macrophage. Myeloid-specific deletion of Prak resulted in a significant reduction in F4/80+CD11b+ peritoneal macrophages with decreased expression of MHC-II and CD80. Upon infection with Listeria monocytogenes, Prak-deficient mice demonstrated an increased mortality, which was accompanied by a higher bacterial load in multiple tissues and elevated levels of proinflammatory cytokines in the serum. While the Prak-deficient macrophage showed similar potency in phagocytosis assays, its bactericidal activity was severely impaired. Moreover, Prak deficiency was associated with defects in ROS production, inflammasome activation as well as autophagy induction. Therefore, PRAK critically contributes to the clearance of intracellular pathogens by affecting multiple aspects of the macrophage function.


Autophagy , Host-Pathogen Interactions/genetics , Host-Pathogen Interactions/immunology , Inflammasomes/metabolism , Intracellular Signaling Peptides and Proteins/genetics , Macrophages/immunology , Macrophages/metabolism , Protein Serine-Threonine Kinases/genetics , Animals , Biomarkers , Cytokines/metabolism , Disease Susceptibility , Gram-Positive Bacterial Infections/genetics , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Inflammation Mediators/metabolism , Intracellular Signaling Peptides and Proteins/metabolism , Listeria/immunology , Mice , Mice, Knockout , Mice, Transgenic , Phagocytosis/genetics , Phagocytosis/immunology , Protein Serine-Threonine Kinases/metabolism , Reactive Oxygen Species/metabolism
13.
Dev Comp Immunol ; 123: 104144, 2021 10.
Article En | MEDLINE | ID: mdl-34051205

microRNAs (miRNAs) are small non-coding RNA-molecules that influence translation by binding to the target gene mRNA. Many miRNAs are found in nested arrangements within larger protein-coding host genes. miRNAs and host genes in a nested arrangement are often transcribed simultaneously, which may indicate that both have similar functions. miRNAs have been implicated in regulating defense responses against pathogen infection in C. elegans and in mammals. Here, we asked if miRNAs in nested arrangements and their host genes are involved in the C. elegans response against infection with Bacillus thuringiensis (Bt). We performed miRNA sequencing and subsequently focused on four nested miRNA-host gene arrangements for a functional genetic analysis. We identified mir-58.1 and mir-2 as negative regulators of C. elegans resistance to Bt infection. However, we did not find any miRNA/host gene pair in which both contribute to defense against Bt.


Bacillus thuringiensis/physiology , Caenorhabditis elegans Proteins/genetics , Caenorhabditis elegans/immunology , Gram-Positive Bacterial Infections/immunology , MicroRNAs/genetics , Animals , Disease Resistance , Host-Pathogen Interactions , Immunity, Innate , Sequence Analysis, RNA
14.
Fish Shellfish Immunol ; 113: 148-153, 2021 Jun.
Article En | MEDLINE | ID: mdl-33838222

The mechanism of extracellular traps (ETs) is important in the cellular response against bacteria. Thus, in the present study, we describe for the first time the capacity of the Nile tilapia (Oreochromis niloticus) microglia in the formation of ETs in Weissella cibaria in vitro infection. Thus, we evaluated the ultrastructure of the microglia culture and observed the formation of ETs 6 h after stimulation with lipopolysaccharide (LPS) and during the course of infection. Our results shed light on the mechanism of formation of ETs in the microglia of teleost fish and the ability of W. cibaria to infect these cells.


Cichlids/immunology , Extracellular Traps/microbiology , Fish Diseases/immunology , Gram-Positive Bacterial Infections/veterinary , Lipopolysaccharides/pharmacology , Microglia/ultrastructure , Weissella/physiology , Animals , Fish Diseases/microbiology , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Microscopy, Electron, Scanning/veterinary
15.
Commun Biol ; 4(1): 251, 2021 02 26.
Article En | MEDLINE | ID: mdl-33637956

Previous studies have shown that ELAVL1 plays multiple roles, but its overall biological function remains ill-defined. Here we clearly demonstrated that zebrafish ELAVL1a was a lipoteichoic acid (LTA)- and LPS-binding protein abundantly stored in the eggs/embryos of zebrafish. ELAVL1a acted not only as a pattern recognition receptor, capable of identifying LTA and LPS, as well as bacteria, but also as an effector molecule, capable of inhibiting the growth of Gram-positive and -negative bacteria. Furthermore, we reveal that the C-terminal 62 residues of ELAVL1a positioned at 181-242 were indispensable for ELAVL1a antibacterial activity. Additionally, site-directed mutagenesis revealed that the hydrophobic residues Val192/Ile193, as well as the positively charged residues Arg203/Arg204, were the functional determinants contributing to the antimicrobial activity of rELAVL1a. Importantly, microinjection of rELAVL1a into embryos markedly promoted their resistance against pathogenic Aeromonas hydrophila challenge, and this pathogen-resistant activity was considerably reduced by co-injection of anti-ELAVL1a antibody or by knockdown with morpholino for elavl1a. Collectively, our results indicate that ELAVL1a is a maternal immune factor that can protect zebrafish embryos from bacterial infection. This work also provides another angle for understanding the biological roles of ELAVL1a.


ELAV Proteins/metabolism , Gram-Negative Bacteria/pathogenicity , Gram-Negative Bacterial Infections/prevention & control , Gram-Positive Bacterial Infections/prevention & control , Zebrafish Proteins/metabolism , Zebrafish/metabolism , Animals , ELAV Proteins/genetics , Gene Expression Regulation, Developmental , Gram-Negative Bacteria/immunology , Gram-Negative Bacterial Infections/immunology , Gram-Negative Bacterial Infections/metabolism , Gram-Negative Bacterial Infections/microbiology , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/metabolism , Gram-Positive Bacterial Infections/microbiology , Lipid A/metabolism , Lipopolysaccharides/metabolism , Mutation , Phylogeny , Protein Binding , Teichoic Acids/metabolism , Zebrafish/embryology , Zebrafish/genetics , Zebrafish/microbiology , Zebrafish Proteins/genetics
16.
Infect Immun ; 89(5)2021 04 16.
Article En | MEDLINE | ID: mdl-33593889

Enterococcus faecalis infections are considered a major public health concern worldwide. The complement system has a crucial role in the protection against different microbial pathogens, including E. faecalis Complement can be activated through three different pathways, including the classical, lectin, and alternative pathways. There is limited information on the role of the classical pathway (CP) in protection against infections caused by E. faecalis In the present study, we generated Fab fragments that successfully block the CP in mouse via inhibition of a key enzyme, C1s-A. Our results showed that anti-C1s-A Fab fragments block CP-mediated C3b and C4b deposition in vitro We further showed that administration of anti-C1s-A Fab fragments significantly impairs the CP functional activity in vivo Moreover, treatment of mice infected with E. faecalis using anti-C1s-A Fab fragments significantly impairs bacterial clearance as determined from the viable bacterial counts recovered from blood, kidneys, spleens, livers, and lungs of infected mice. Overall, this study highlights the essential role of the CP in host defense against E. faecalis.


Complement Activation/immunology , Complement Pathway, Classical , Complement System Proteins/immunology , Enterococcus faecalis/immunology , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Host-Pathogen Interactions , Animals , Bacterial Load , Disease Susceptibility , Humans , Mice , Organ Specificity
17.
Fish Shellfish Immunol ; 112: 23-30, 2021 May.
Article En | MEDLINE | ID: mdl-33617959

Galectin-9 is a ß-galactoside-binding lectin which could modulate a variety of biological functions including recognition, aggregation and clearance of pathogen. In this study, one Galectin-9 (named PoGalectin-9) was identified from Japanese flounder Paralichthys olivaceus. PoGalectin-9 belongs to the tandem-repeat type, containing one 127-amino acids CRD domain within N terminal and one 122-amino acids CRD domain within C-terminal. The open reading frame of PoGalectin-9 cDNA was 921 bp encoding 306 amino acids. Sequence similarity comparison confirmed that PoGalectin-9 shared high homology with other Galectin-9. The tissue distribution and expression profiles after bacterial infection were also investigated. PoGalectin-9 was widely distributed in all of the examined tissues of Japanese flounder but was predominantly expressed in the spleen, kidney and intestine. After Edwardsiella tarda challenge, the expression of PoGalectin-9 was up-regulated in spleen and down regulated in kidney. ELISA experiment showed that recombinant PoGalectin-9 (rPoGalectin-9) exhibit binding capacity to lipopolysaccharide (LPS) and peptidoglycan (PGN), which is significantly correlated with the concentration of rPoGalectin-9. Meanwhile, the rPoGalectin-9 protein showed strong agglutinating activities against both Gram-negative bacteria and Gram-positive bacteria. Bacterial binding experiments showed that rPoGalectin-9 could bind all examined bacteria. In conclusion, the present study indicate that PoGalectin-9 might play important roles during the immune responses of Japanese flounder against bacterial pathogens.


Fish Diseases/immunology , Galectins/genetics , Galectins/immunology , Gene Expression Regulation/immunology , Immunity, Innate/genetics , Perciformes/genetics , Perciformes/immunology , Amino Acid Sequence , Animals , Base Sequence , Edwardsiella tarda/physiology , Enterobacteriaceae Infections/immunology , Enterobacteriaceae Infections/microbiology , Enterobacteriaceae Infections/veterinary , Fish Proteins/chemistry , Fish Proteins/genetics , Fish Proteins/immunology , Galectins/chemistry , Gene Expression Profiling/veterinary , Gram-Negative Bacteria/physiology , Gram-Negative Bacterial Infections/immunology , Gram-Negative Bacterial Infections/microbiology , Gram-Negative Bacterial Infections/veterinary , Gram-Positive Bacteria/physiology , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Gram-Positive Bacterial Infections/veterinary , Lipopolysaccharides/pharmacology , Peptidoglycan/pharmacology , Phylogeny , Sequence Alignment/veterinary , Tandem Repeat Sequences
18.
J Drugs Dermatol ; 20(2): 199-202, 2021 02 01.
Article En | MEDLINE | ID: mdl-33538555

BACKGROUND: Epidermal inclusion cysts (EIC) are one of the most common forms of cysts found on and/or underneath the skin. Inflamed EICs typically show signs and symptoms such as pain and erythema, mimicking cutaneous abscess. However, prior studies have demonstrated at least 20% of lesions are culture negative. OBJECTIVE: To determine the rate of culture positivity in mild inflamed epidermal inclusion cysts, in particular to identify whether empiric antibiotics are warranted. METHODS: In a retrospective chart review 76 cases of inflamed EIC that were mild (lacking systemic symptoms) were analyzed who presented to the department of dermatology at Mount Sinai between 2016–2019. RESULTS: Of cultures taken from inflamed cysts, 47% resulted in no bacterial growth or growth of normal flora, 38.4% resulted in growth of aerobic bacteria with methicillin-resistant Staphylococcus aureus (8%), Staphylococcus lugdunensis (5%), and methicillin-sensitive Staphylococcus aureus (13%) predominating, and 9.3% resulting in growth of anaerobic bacteria with Finegoldia magna, Peptostreptococcus, and Cutibacterium acnes presenting. Review of prescribed treatment regimens often involved antibiotic medication, despite a high prevalence of negative culture. CONCLUSIONS: Almost half of cases of mild inflamed EIC (lacking systemic symptoms) cultured will not grow pathogenic bacteria, therefore incision and drainage with culture and appropriate therapy is a viable therapeutic option in uncomplicated inflamed EIC lesions. In this way, over prescription of antibiotics can be minimized. J Drugs Dermatol. 2021;20(2):199-202. doi:10.36849/JDD.5014.


Abscess/diagnosis , Anti-Bacterial Agents/therapeutic use , Drainage , Epidermal Cyst/diagnosis , Gram-Positive Bacterial Infections/diagnosis , Abscess/microbiology , Abscess/therapy , Anti-Bacterial Agents/pharmacology , Clinical Decision-Making , Diagnosis, Differential , Drug Resistance, Bacterial , Epidermal Cyst/immunology , Epidermal Cyst/microbiology , Epidermal Cyst/therapy , Epidermis/microbiology , Epidermis/pathology , Epidermis/surgery , Firmicutes/isolation & purification , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Gram-Positive Bacterial Infections/therapy , Humans , Peptostreptococcus/isolation & purification , Propionibacterium acnes/isolation & purification , Retrospective Studies , Staphylococcus/isolation & purification
20.
Molecules ; 26(3)2021 Jan 22.
Article En | MEDLINE | ID: mdl-33499307

Cutibacterium acnes (formerly Propionibacterium acnes) is one of the major bacterial species responsible for acne vulgaris. Numerous bioactive compounds from Momordica charantia Linn. var. abbreviata Ser. have been isolated and examined for many years. In this study, we evaluated the suppressive effect of two cucurbitane-type triterpenoids, 5ß,19-epoxycucurbita-6,23-dien-3ß,19,25-triol (Kuguacin R; KR) and 3ß,7ß,25-trihydroxycucurbita-5,23-dien-19-al (TCD) on live C. acnes-stimulated in vitro and in vivo inflammatory responses. Using human THP-1 monocytes, KR or TCD suppressed C. acnes-induced production of interleukin (IL)-1ß, IL-6 and IL-8 at least above 56% or 45%, as well as gene expression of these three pro-inflammatory cytokines. However, a significantly strong inhibitory effect on production and expression of tumor necrosis factor (TNF)-α was not observed. Both cucurbitanes inhibited C. acnes-induced activation of the myeloid differentiation primary response 88 (MyD88) (up to 62%) and mitogen-activated protein kinases (MAPK) (at least 36%). Furthermore, TCD suppressed the expression of pro-caspase-1 and cleaved caspase-1 (p10). In a separate study, KR or TCD decreased C. acnes-stimulated mouse ear edema by ear thickness (20% or 14%), and reduced IL-1ß-expressing leukocytes and neutrophils in mouse ears. We demonstrated that KR and TCD are potential anti-inflammatory agents for modulating C. acnes-induced inflammation in vitro and in vivo.


Anti-Inflammatory Agents/chemistry , Anti-Inflammatory Agents/pharmacology , Cucurbitacins/chemistry , Cucurbitacins/pharmacology , Inflammation/drug therapy , Momordica charantia/chemistry , Triterpenes/chemistry , Triterpenes/pharmacology , Acne Vulgaris/drug therapy , Acne Vulgaris/immunology , Acne Vulgaris/microbiology , Animals , Cytokines/biosynthesis , Cytokines/genetics , Disease Models, Animal , Glycosides/chemistry , Glycosides/pharmacology , Gram-Positive Bacterial Infections/drug therapy , Gram-Positive Bacterial Infections/immunology , Gram-Positive Bacterial Infections/microbiology , Humans , Inflammation/immunology , Inflammation/microbiology , Male , Mice , Mice, Inbred ICR , Monocytes/drug effects , Monocytes/immunology , Monocytes/metabolism , Phytotherapy , Plant Extracts/chemistry , Plant Extracts/pharmacology , Propionibacteriaceae/pathogenicity , RNA, Messenger/genetics , RNA, Messenger/metabolism , THP-1 Cells
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