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Tu, S.-M.

Publications and source records attributed to Tu, S.-M..

2 recordsLinked to original sources

Lytic IFNγ is stored in granzyme B-containing cytotoxic granules and co-secreted by effector CD8⁺ T cells

Cytotoxic CD8 T cells form immunological synapses with target cells and release effector molecules, including IFN{gamma}, to mediate antitumor immunity. However, the mechanisms by which IFN{gamma} contributes to cytotoxicity remain incompletely understood. Here, we identify a subset of IFN{gamma} stored within GzmB cytotoxic granules (CGs) in activated mouse and human CD8 T cells, termed lytic IFN{gamma}. Lytic IFN{gamma} is polarized to the synapse and co-secreted with GzmB in both soluble and supramolecular attack particle (SMAP)-associated forms. Mouse CD8 T cells lacking the vesicle priming factor Munc13-4 exhibit impaired both CG and early IFN{gamma} release at the immunological synapse, while prolonged synaptic engagement restores IFN{gamma} secretion. Super-resolution imaging demonstrates that sustained synaptic interactions drive IFN{gamma} secretion at distal membrane sites, suggesting the existence of distinct IFN{gamma} populations with potentially diverse functions beyond lytic IFN{gamma}. These findings uncover an unrecognized mechanism of IFN{gamma} storage and release, underscoring its pivotal role in CD8 T cell-mediated tumor elimination.

immunology↗

Thrombospondins 1 and 4 undergo coordinated transport to multicore cytotoxic granules to regulate SMAP biogenesis and function in CTL-mediatedcytotoxicity

Supramolecular Attack Particles (SMAPs) are particulate entities, characterized by a cytotoxic core enriched in granzymes and perforin surrounded by a glycoproteic shell, released by CTLs and NK cells. Prior proteomic analysis identified thrombospondin-1 (TSP-1) and thrombospondin-4 (TSP-4) as putative components of SMAPs. While TSP-1 has been validated as a component of the SMAP shell and shown to contribute significantly to CTL-mediated killing, the expression and function of TSP-4 in CTLs, and its interplay with TSP-1 in SMAP biogenesis and function, has not been investigated as yet. Here we demonstrate that TSP-4 and TSP-1 have a complementary expression profile during in vitro human CD8+ T cell differentiation to CTLs and sequentially localize to lytic granules (LG), with TSP-4 being required for TSP-1 association with LGs. Correlative light microscopy identified the TSP-enriched LGs as the SMAP-containing multicore granules. We show by STED microscopy a heterogeneity among TSP-enriched LGs, the most abundant population being positive for both TSP-4 and TSP-1. We also show that TSP-1 and TSP-4 are co-released in association with SMAPs at immune synapses formed on planar supported lipid bilayers, as assessed by dSTORM imaging. Finally, we provide evidence that TSP-4 is required for CTL- and SMAP-mediated cell killing. Of note, we found that chronic lymphocytic leukemia (CLL) cell supernatants, which suppress CTL mediated killing, also suppress expression of TSP-4 as well as of cytolytic effectors and impair SMAP biogenesis. These results identify TSP-4 as a key player in SMAP structure and activity and suggest that SMAPs may be a new target for immune suppression by CLL.

immunology↗