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1.
PLoS Genet ; 19(1): e1010586, 2023 Jan.
Article in English | MEDLINE | ID: mdl-36622851

ABSTRACT

Streptococcus pneumoniae (pneumococcus) is one of the most frequent causes of pneumonia, sepsis and meningitis in humans, and an important cause of mortality among children and the elderly. We have previously reported the suitability of the zebrafish (Danio rerio) larval model for the study of the host-pathogen interactions in pneumococcal infection. In the present study, we characterized the zebrafish innate immune response to pneumococcus in detail through a whole-genome level transcriptome analysis and revealed a well-conserved response to this human pathogen in challenged larvae. In addition, to gain understanding of the genetic factors associated with the increased risk for severe pneumococcal infection in humans, we carried out a medium-scale forward genetic screen in zebrafish. In the screen, we identified a mutant fish line which showed compromised resistance to pneumococcus in the septic larval infection model. The transcriptome analysis of the mutant zebrafish larvae revealed deficient expression of a gene homologous for human C-reactive protein (CRP). Furthermore, knockout of one of the six zebrafish crp genes by CRISPR-Cas9 mutagenesis predisposed zebrafish larvae to a more severe pneumococcal infection, and the phenotype was further augmented by concomitant knockdown of a gene for another Crp isoform. This suggests a conserved function of C-reactive protein in anti-pneumococcal immunity in zebrafish. Altogether, this study highlights the similarity of the host response to pneumococcus in zebrafish and humans, gives evidence of the conserved role of C-reactive protein in the defense against pneumococcus, and suggests novel host genes associated with pneumococcal infection.


Subject(s)
Pneumococcal Infections , Zebrafish , Animals , Child , Humans , Aged , Zebrafish/genetics , C-Reactive Protein , Pneumococcal Infections/genetics , Immunity, Innate/genetics , Streptococcus pneumoniae/genetics
2.
Dis Model Mech ; 13(8)2020 08 23.
Article in English | MEDLINE | ID: mdl-32859577

ABSTRACT

Tuberculosis is a chronic infection by Mycobacterium tuberculosis that results in over 1.5 million deaths worldwide each year. Currently, there is only one vaccine against tuberculosis, the Bacillus Calmette-Guérin (BCG) vaccine. Despite widespread vaccination programmes, over 10 million new M. tuberculosis infections are diagnosed yearly, with almost half a million cases caused by antibiotic-resistant strains. Novel vaccination strategies concentrate mainly on replacing BCG or boosting its efficacy and depend on animal models that accurately recapitulate the human disease. However, efforts to produce new vaccines against an M. tuberculosis infection have encountered several challenges, including the complexity of M. tuberculosis pathogenesis and limited knowledge of the protective immune responses. The preclinical evaluation of novel tuberculosis vaccine candidates is also hampered by the lack of an appropriate animal model that could accurately predict the protective effect of vaccines in humans. Here, we review the role of zebrafish (Danio rerio) and other fish models in the development of novel vaccines against tuberculosis and discuss how these models complement the more traditional mammalian models of tuberculosis.


Subject(s)
Drug Development , Mycobacterium tuberculosis/drug effects , Tuberculosis Vaccines/pharmacology , Tuberculosis/prevention & control , Zebrafish , Animals , Disease Models, Animal , Humans , Mycobacterium tuberculosis/immunology , Mycobacterium tuberculosis/pathogenicity , Species Specificity , Tuberculosis/immunology , Tuberculosis/microbiology , Zebrafish/immunology , Zebrafish/microbiology
3.
Dev Comp Immunol ; 103: 103523, 2020 02.
Article in English | MEDLINE | ID: mdl-31626817

ABSTRACT

Tuberculosis remains a major global health challenge. To gain information about genes important for defense against tuberculosis, we used a well-established tuberculosis model; Mycobacterium marinum infection in adult zebrafish. To characterize the immunological response to mycobacterial infection at 14 days post infection, we performed a whole-genome level transcriptome analysis using cells from kidney, the main hematopoietic organ of adult zebrafish. Among the upregulated genes, those associated with immune signaling and regulation formed the largest category, whereas the largest group of downregulated genes had a metabolic role. We also performed a forward genetic screen in adult zebrafish and identified a fish line with severely impaired survival during chronic mycobacterial infection. Based on transcriptome analysis, these fish have decreased expression of several immunological genes. Taken together, these results give new information about the genes involved in the defense against mycobacterial infection in zebrafish.


Subject(s)
Hematopoietic System/immunology , Mycobacterium Infections, Nontuberculous/immunology , Zebrafish/immunology , Animals , Gene Expression Profiling , Kidney/immunology , Mycobacterium marinum
4.
PLoS One ; 14(2): e0212339, 2019.
Article in English | MEDLINE | ID: mdl-30785944

ABSTRACT

Chicken avidin (Avd) and streptavidin from Streptomyces avidinii are extensively used in bionanotechnology due to their extremely tight binding to biotin (Kd ~ 10-15 M for chicken Avd). We previously reported engineered Avds known as antidins, which have micro- to nanomolar affinities for steroids, non-natural ligands of Avd. Here, we report the 2.8 Å X-ray structure of the sbAvd-2 (I117Y) antidin co-crystallized with progesterone. We describe the creation of new synthetic phage display libraries and report the experimental as well as computational binding analysis of progesterone-binding antidins. We introduce a next-generation antidin with 5 nM binding affinity for progesterone, and demonstrate the use of antidins for measuring progesterone in serum samples. Our data give insights on how to engineer and alter the binding preferences of Avds and to develop better molecular tools for modern bionanotechnological applications.


Subject(s)
Avidin/metabolism , Biotin/metabolism , Progesterone/blood , Progesterone/metabolism , Animals , Avidin/chemistry , Binding Sites , Biological Assay , Biotin/chemistry , Dogs , Ligands , Models, Molecular , Progesterone/chemistry , Protein Binding
5.
Sci Rep ; 9(1): 995, 2019 01 30.
Article in English | MEDLINE | ID: mdl-30700796

ABSTRACT

Tuberculosis is a multifactorial bacterial disease, which can be modeled in the zebrafish (Danio rerio). Abdominal cavity infection with Mycobacterium marinum, a close relative of Mycobacterium tuberculosis, leads to a granulomatous disease in adult zebrafish, which replicates the different phases of human tuberculosis, including primary infection, latency and spontaneous reactivation. Here, we have carried out a transcriptional analysis of zebrafish challenged with low-dose of M. marinum, and identified intelectin 3 (itln3) among the highly up-regulated genes. In order to clarify the in vivo significance of Itln3 in immunity, we created nonsense itln3 mutant zebrafish by CRISPR/Cas9 mutagenesis and analyzed the outcome of M. marinum infection in both zebrafish embryos and adult fish. The lack of functional itln3 did not affect survival or the mycobacterial burden in the zebrafish. Furthermore, embryonic survival was not affected when another mycobacterial challenge responsive intelectin, itln1, was silenced using morpholinos either in the WT or itln3 mutant fish. In addition, M. marinum infection in dexamethasone-treated adult zebrafish, which have lowered lymphocyte counts, resulted in similar bacterial burden in both WT fish and homozygous itln3 mutants. Collectively, although itln3 expression is induced upon M. marinum infection in zebrafish, it is dispensable for protective mycobacterial immune response.


Subject(s)
Cytokines/metabolism , Lectins/metabolism , Mycobacterium Infections, Nontuberculous/microbiology , Mycobacterium marinum/physiology , Zebrafish Proteins/metabolism , Zebrafish/microbiology , Animals , Base Sequence , CRISPR-Cas Systems/genetics , Codon, Nonsense/genetics , Cytokines/genetics , Dexamethasone/pharmacology , Disease Resistance/immunology , Embryo, Nonmammalian/drug effects , Embryo, Nonmammalian/metabolism , Embryo, Nonmammalian/microbiology , Gene Expression Regulation/drug effects , Genome , Lectins/genetics , Lymphocyte Depletion , Morpholinos/pharmacology , Mutation/genetics , Mycobacterium Infections, Nontuberculous/genetics , Mycobacterium Infections, Nontuberculous/immunology , Mycobacterium marinum/drug effects , Survival Analysis , Zebrafish/embryology , Zebrafish/genetics , Zebrafish Proteins/genetics
6.
Cell Host Microbe ; 24(4): 465-466, 2018 10 10.
Article in English | MEDLINE | ID: mdl-30308150

ABSTRACT

In this issue of Cell Host & Microbe, Walton et al. (2018) uncover the mycobacterial factors that activate VEGF signaling and promote aberrant angiogenesis in the tuberculous granuloma. Preventing abnormal angiogenesis in the granuloma represents a potential therapeutic approach for tuberculosis.


Subject(s)
Cord Factors , Vascular Endothelial Growth Factor A , Cyclopropanes , Granuloma , Humans , Trehalose
7.
PLoS One ; 13(4): e0196238, 2018.
Article in English | MEDLINE | ID: mdl-29684067

ABSTRACT

CRISPR-Cas9 technology is routinely applied for targeted mutagenesis in model organisms and cell lines. Recent studies indicate that the prokaryotic CRISPR-Cas9 system is affected by eukaryotic chromatin structures. Here, we show that the likelihood of successful mutagenesis correlates with transcript levels during early development in zebrafish (Danio rerio) embryos. In an experimental setting, we found that guide RNAs differ in their onset of mutagenesis activity in vivo. Furthermore, some guide RNAs with high in vitro activity possessed poor mutagenesis activity in vivo, suggesting the presence of factors that limit the mutagenesis in vivo. Using open access datasets generated from early developmental stages of the zebrafish, and guide RNAs selected from the CRISPRz database, we provide further evidence for an association between gene expression during early development and the success of CRISPR-Cas9 mutagenesis in zebrafish embryos. In order to further inspect the effect of chromatin on CRISPR-Cas9 mutagenesis, we analysed the relationship of selected chromatin features on CRISPR-Cas9 mutagenesis efficiency using publicly available data from zebrafish embryos. We found a correlation between chromatin openness and the efficiency of CRISPR-Cas9 mutagenesis. These results indicate that CRISPR-Cas9 mutagenesis is influenced by chromatin accessibility in zebrafish embryos.


Subject(s)
Chromatin/chemistry , RNA, Guide, Kinetoplastida/genetics , Zebrafish Proteins/genetics , Zebrafish/embryology , Animals , CRISPR-Cas Systems , Chromatin/genetics , Databases, Genetic , Embryonic Development , Gene Expression , Gene Expression Regulation, Developmental , Transcriptional Activation , Zebrafish/genetics
8.
Acta Neuropathol ; 135(5): 727-742, 2018 05.
Article in English | MEDLINE | ID: mdl-29423877

ABSTRACT

A novel multi-organ disease that is fatal in early childhood was identified in three patients from two non-consanguineous families. These children were born asymptomatic but at the age of 2 months they manifested progressive multi-organ symptoms resembling no previously known disease. The main clinical features included progressive cerebropulmonary symptoms, malabsorption, progressive growth failure, recurrent infections, chronic haemolytic anaemia and transient liver dysfunction. In the affected children, neuropathology revealed increased angiomatosis-like leptomeningeal, cortical and superficial white matter vascularisation and congestion, vacuolar degeneration and myelin loss in white matter, as well as neuronal degeneration. Interstitial fibrosis and previously undescribed granuloma-like lesions were observed in the lungs. Hepatomegaly, steatosis and collagen accumulation were detected in the liver. A whole-exome sequencing of the two unrelated families with the affected children revealed the transmission of two heterozygous variants in the NHL repeat-containing protein 2 (NHLRC2); an amino acid substitution p.Asp148Tyr and a frameshift 2-bp deletion p.Arg201GlyfsTer6. NHLRC2 is highly conserved and expressed in multiple organs and its function is unknown. It contains a thioredoxin-like domain; however, an insulin turbidity assay on human recombinant NHLRC2 showed no thioredoxin activity. In patient-derived fibroblasts, NHLRC2 levels were low, and only p.Asp148Tyr was expressed. Therefore, the allele with the frameshift deletion is likely non-functional. Development of the Nhlrc2 null mouse strain stalled before the morula stage. Morpholino knockdown of nhlrc2 in zebrafish embryos affected the integrity of cells in the midbrain region. This is the first description of a fatal, early-onset disease; we have named it FINCA disease based on the combination of pathological features that include fibrosis, neurodegeneration, and cerebral angiomatosis.


Subject(s)
Angiomatosis/genetics , Brain Diseases/genetics , Genetic Variation , Intracellular Signaling Peptides and Proteins/genetics , Neurodegenerative Diseases/genetics , Pulmonary Fibrosis/genetics , Angiomatosis/pathology , Angiomatosis/physiopathology , Animals , Animals, Genetically Modified , Brain/metabolism , Brain/pathology , Brain Diseases/pathology , Brain Diseases/physiopathology , Cells, Cultured , Family , Fatal Outcome , Humans , Infant , Intracellular Signaling Peptides and Proteins/metabolism , Liver Diseases/genetics , Liver Diseases/pathology , Liver Diseases/physiopathology , Male , Mice, Inbred C57BL , Neurodegenerative Diseases/pathology , Neurodegenerative Diseases/physiopathology , Prospective Studies , Pulmonary Fibrosis/pathology , Pulmonary Fibrosis/physiopathology , Syndrome , Zebrafish , Zebrafish Proteins/genetics , Zebrafish Proteins/metabolism
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