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Schwär, G.

Publications and source records attributed to Schwär, G..

2 recordsLinked to original sources

Cytotoxic efficiency of human CD8+ T cell memory subtypes

Immunological memory is an important concept to protect humans against recurring diseases. Memory CD8+ T cells are required for quick expansion into effector cells but also provide immediate cytotoxicity against their targets. Whereas many functions of the two main cytotoxic subtypes, effector memory CD8+ T cells (TEM) and central memory CD8+ T cells (TCM), are relatively well defined, single TEM and TCM cell cytotoxicity has not been quantified. Here, we analyze human CD8+ subtype distribution following SEA stimulation and quantify the expression of death mediators, including perforin, granzyme B, FasL and TRAIL. We find higher perforin, granzyme B and FasL expression in TEM and compared to TCM. To quantify single TEM and TCM cytotoxicity, we develop a FRET-based fluorescent assay with NALM6 target cells stably transfected with a GFP-RFP FRET construct based on a caspase-cleavage sequence (apoptosis sensor Casper-GR). Applying this assay, TEM or TCM induced target cell apoptosis or necrosis can be quantified. We find that single TEM are much more effective than TCM in killing their targets mainly by apoptosis and secondary necrosis. The reason for this is the higher perforin expression and on a more efficient lytic immunological synapse during TEM-target contact compared to TCM-target contact. Defining and quantifying single TEM and TCM cytotoxicity and the respective mechanism should be helpful to optimize future subset-based immune therapies.

immunology

Identification of molecular candidates which regulate calcium-dependent CD8+ T-cell cytotoxicity

Cytotoxic CD8+ T lymphocytes (CTL) eliminate infected cells or transformed tumour cells by releasing perforin-containing cytotoxic granules at the immunological synapse. The secretion of such granules depends on Ca2+-influx through store operated Ca2+ channels, formed by STIM-activated Orai proteins. Whereas molecular mechanisms of the secretion machinery are well understood, much less is known about the molecular machinery that regulates the efficiency of Ca2+-dependent target cell killing. Here, we isolated total RNA from natural killer (NK) cells, non-stimulated CD8+ T-cells, and from Staphylococcus aureus enterotoxin A (SEA) stimulated CD8+ T-cells (SEA-CTL) and conducted whole genome expression profiling by microarray experiments. Based on differential expression analysis of the transcriptome data and analysis of master regulator genes, we identified 31 candidates which potentially regulate Ca2+-homeostasis in CTL. To investigate a putative function of these candidates in CTL cytotoxicity, we transfected either SEA-stimulated CTL (SEA-CTL) or antigen specific CD8+ T-cell clones (CTL-MART-1) with siRNAs specific against the identified candidates and analyzed the killing capacity using a real-time killing assay. In addition, we complemented the analysis by studying the effect of inhibitory substances acting on the candidate proteins if available. Finally, to unmask their involvement in Ca2+ dependent cytotoxicity, candidates were also analyzed under Ca2+-limiting conditions. Overall, this strategy led to the identification of KCNN4, RCAN3, CCR5 and BCL2 as potential candidates to regulate the efficiency of Ca2+-dependent target cell killing.

immunology