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Stankovic, S.

Publications and source records attributed to Stankovic, S..

2 recordsLinked to original sources

RIG-I Stimulation Enhances Effector Function and Proliferation of Primary Human CD8 T Cells

Cytotoxic CD8 T lymphocytes (CTL) are crucial in antiviral immune responses. However, their recruitment to infection sites renders them at risk of viral infection that could modulate their effector activity. CTL express RIG-I that detects cytosolic viral RNA and subsequently induce antiviral gene expression. Here, we investigated how influenza A virus (IAV) infection influence TCR-dependent effector responses. IAV infection of CTL stimulated RIG-I, and activated downstream pathways including TBK1 and NF-B, resulting in type-I interferon secretion. Transfection of CTL with a pure RIG-I ligand, tri-phosphorylated double stranded RNA(3p-dsRNA), not only stimulated these pathways but also enhanced CTL proliferation in vitro and protected them from IAV infection. Analogous with a positive effect on CD8 effector function, both IAV infection and RIG-I ligand transfection enhanced CTL degranulation and cytokine secretion. Conversely, activation of CTL via CD3/CD28-crosslinking increased their susceptibility to IAV infection. Altogether, RIG-I stimulation either by IAV infection or 3p-dsRNA transfection promoted cell intrinsic antiviral pathways and enhanced CD8 effector functions. These findings suggest that RIG-I agonists could enhance and prolong CTL effector function in immunotherapy.

immunology↗

Repertoire and abundance of secreted virulence factors shape the pathogenic capacity of Pseudomonas syringae pv. aptata

Pseudomonas syringae pv. aptata is a member of the sugar beet pathobiome and the causative agent of leaf spot disease. Like many pathogenic bacteria, P. syringae relies on the secretion of toxins, which manipulate host-pathogen interactions, to establish and maintain an infection. This study analyzes the secretome of six pathogenic P. syringae pv. aptata strains with different defined virulence capacities in order to identify common and strain-specific features, and correlate the secretome with disease outcome. All strains show a high type III secretion system (T3SS) and type VI secretion system (T6SS) activity under apoplast-like conditions mimicking the infection. Surprisingly, we found that low pathogenic strains show a higher secretion of most T3SS substrates, whereas a distinct subgroup of four effectors was exclusively secreted in medium and high pathogenic strains. Similarly, we detected two T6SS secretion patterns: while one set of proteins was highly secreted in all strains, another subset consisting of known T6SS substrates and previously uncharacterized proteins was exclusively secreted in medium and high virulence strains. Taken together, our data show that P. syringae pathogenicity is correlated with the repertoire and fine-tuning of effector secretion and indicate distinct strategies for establishing virulence of P. syringae pv. aptata in plants.

microbiology↗