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Horvath, E.

Publications and source records attributed to Horvath, E..

2 recordsLinked to original sources

Cognate T-cell labeling by conventional and unconventional antigen-presenting cells in vivo using a modular SrtA-based toolkit

While different antigen-presenting cell (APC) populations can drive divergent T-cell fates even when presenting identical antigens (Ags), our ability to trace these specific in vivo interaction histories remains constrained by a lack of compatible molecular tools. Here, we describe an enhanced Labeling Immune Partnerships by SorTagging Intercellular Contacts (LIPSTIC) platform utilizing the immunologically inert human CD58/CD2 receptor-ligand pair (SrtA-hCD58/G5-hCD2). This system provides a modular alternative to previous LIPSTIC animal models and enables the detection and recovery of T cells following Ag-dependent interactions with distinct APC populations in vitro and in vivo. We applied this approach to interrogate the role of type 3 innate lymphoid cells (ILC3s), an unconventional ROR{gamma}t Ag-presenting population whose role in shaping Ag-specific T cells in vivo remain poorly defined. Modified LIPSTIC successfully recorded cognate interactions between ILC3s and naive CD4 T cells in the spleen and enabled direct comparison with CD4+ T cells activated by conventional dendritic cells (cDCs). Although interactions with ILC3s resulted in lower frequency of in vivo-labeled T cells than cDC2s, CD4+ T cells showed comparable cell division and expression of activation markers irrespectively of an APC type. Together, these findings establish SrtA-hCD58/G5-hCD2 as a versatile LIPSTIC receptor-ligand pair for tracking cell-cell interactions in vivo and provide a robust tool for studying how APC identity influences Ag-specific T-cell responses.

immunology↗

The Uvrag-containing PI3K complex promotes Hsc70-4 dependent endosomal clathrin removal and lysosomal maturation in Drosophila nephrocytes

The class III phosphatidylinositol 3-kinase complex (PI3K(III)) generates phosphatidylinositol-3-phosphate (PI(3)P), a lipid that defines endosomal membrane identity. Two PI3K(III) complexes share core subunits but differ in their fourth component: the Atg14-containing complex I functions in autophagy, whereas the Uvrag-containing complex II is required for endosomal maturation. Despite this, the mechanism by which complex II promotes lysosomal function remains unclear. Using Drosophila nephrocytes, we show that PI(3)P is enriched on Rab7-positive late endosomes and that the Hsp70 chaperone Hsc70-4 binds phosphoinositides. Loss of PI3K complex II disrupts endolysosomal organization and phenocopies Hsc70-4 inhibition. In both cases, clathrin accumulates on intracellular, often endosomal membranes, Rab7 compartments are disorganized, and abnormal endolysosomal structures form. These defects are accompanied by impaired HOPS recruitment, lysosomal dysfunction, and secretion of endolysosomal content. Importantly, clathrin depletion partially rescues these defects. Together, our findings identify a role for PI3K complex II in promoting clathrin removal from endosomal membranes and link PI(3)P and Hsc70-4 activity to lysosomal maturation.

cell biology↗