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Chetty, A.

Publications and source records attributed to Chetty, A..

2 recordsLinked to original sources

Tools for genetic manipulation of the endemic fungal pathogen, Emergomyces africanus, and the application of a fluorescent reporter strain in infection models

AbstractEmergomyces africanus is a thermally dimorphic fungal pathogen endemic to Southern Africa which can cause fatal systemic infections in persons with advanced HIV disease. Its mechanisms of pathogenesis are not well understood. Characterisation of virulence traits in this pathogen requires appropriate molecular tools for genetic manipulation. Molecular technologies developed for the transformation of H. capsulatum were adapted for use in E. africanus. Agrobacterium-mediated transformation was used to generate a reporter strain expressing green fluorescent protein (GFP). The E. africanus GFP reporter strain facilitated the study of yeast interaction with macrophages in vitro and allowed the identification of infected phagocyte cell types in the mouse lung by flow cytometry. E. africanus could also maintain episomal plasmids with telomere-like sequences, to introduce expression constructs without genome modification. Using this plasmid system, RNA interference constructs were used to knock down the expression of cell wall (1,3)-glucan by targeting the transcripts of the -glucan synthase (AGS1). An episomal CRISPR/Cas9 system was evaluated for E. africanus, which effectively disrupted GFP in a reporter strain and enabled the generation of a URA5 uracil auxotroph. These tools and strains will facilitate future studies to elucidate the mechanisms of pathogenesis of E. africanus. ImportanceEmergomyces africanus is an opportunistic fungal pathogen affecting persons with advanced HIV disease in South Africa. The biology and pathogenesis of E. africanus are not well understood, as the importance of the disease caused by this fungus (emergomycosis) has only been recognised in recent years and molecular studies have been impaired by the lack of genetic technologies. In this work, we describe tools and methods for the genetic modification of this pathogen, which will accelerate future studies investigating how the fungus causes disease in the human host. These essential tools include (1) the ability to create fluorescent reporter strains, such as the green fluorescent protein E. africanus strain described here, which facilitates tracking the spread of the fungus during infection and enhances microscopy studies, (2) methods for knocking down gene expression in E. africanus, and (3) the permanent disruption of genes through CRISPR/Cas9 gene editing.

microbiology↗

Maternal type 2 immunity promotes a microchimeric transfer of systemic type 2 immunity to offspring.

During maternity mothers undergo an immune pivot to a type 2 immune phenotype which is independent of any antigen experience. In this study we present this maternal Type 2 immunity as a key enabler of optimal maternally-driven microchimeric transfer of immunity to helminth infection in offspring. To demonstrate that maternal type 2 immunity dictates offspring immunity we nursed wildtype (WT) offspring on WT or IL-4R-/- foster mothers. WT offspring nursed on IL-4Ra-/- mothers acquired a reduced type 2 immune signature compared to WT offspring nursed on WT mothers. This demonstrated maternal IL-4R imprints type 2 immunity in offspring. This increased type 2 immunity in offspring related to a maternal IL-4R dependent increased frequency of maternal microchimeric cells (MMc) being detected in offspring. Higher worm burdens were detected in offspring nursed on IL-4R-/- mothers, demonstrating that an antigen independent promotion of maternal type 2 immunity provides offspring with protective immunity against a helminth infection. To establish the contribution of increased MMc in offspring nursed on WT mothers in the control of infection, we undertook an antibody mediated depletion of MMc cells in WT offspring. This MMc depletion impaired the control of infection and reduced the magnitude of offspring type 2 immune response against a helminth infection. These findings present antigen independent maternal IL-4R driven type 2 immunity during pregnancy as critical for imparting a profound immune influence via MMc on offspring immunity to infection.

immunology↗