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Phenotypic and Functional Analysis of Activated Regulatory T Cells Isolated from Chronic Lymphocytic Choriomeningitis Virus-infected Mice
Published on: June 22, 2016
Five inhibitory receptors display distinct vesicular distributions in T cells
Jiahe Lu1,2,3, Alisa Veler1, Boris Simonetti4
1School of Cellular and Molecular Medicine, University of Bristol, Bristol, BS8 1TD, UK.
Abstract:
T cells can express multiple inhibitory receptors. Upon induction of T cell exhaustion in response to persistent antigen, prominently in the anti-tumor immune response, many are expressed simultaneously. Key inhibitory receptors are CTLA-4, PD-1, LAG3, TIM3 and TIGIT, as investigated here. These receptors are important as central therapeutic targets in cancer immunotherapy. Inhibitory receptors are not constitutively expressed on the cell surface, but substantial fractions reside in intracellular vesicular structures. It remains unresolved to which extent the subcellular localization of different inhibitory receptors is distinct. Using quantitative imaging of subcellular distributions and plasma membrane insertion as complemented by proximity proteomics and a biochemical analysis of the association of the inhibitory receptors with trafficking adaptors, the subcellular distributions of the five inhibitory receptors were discrete. The distribution of CTLA-4 was most distinct with preferential association with lysosomal-derived vesicles and the sorting nexin 1/2/5/6 transport machinery. With a lack of evidence for the existence of specific vesicle subtypes to explain divergent inhibitory receptor distributions, we suggest that such distributions are driven by divergent trafficking through an overlapping joint set of vesicular structures. This extensive characterization of the subcellular localization of five inhibitory receptors in relation to each other lays the foundation for the molecular investigation of their trafficking and its therapeutic exploitation.
Insights
Five key inhibitory receptors on T cells, including CTLA-4, PD-1, LAG3, TIM3, and TIGIT, show distinct intracellular distributions. This finding is crucial for understanding cancer immunotherapy targets and their trafficking.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- T cells express multiple inhibitory receptors, such as CTLA-4, PD-1, LAG3, TIM3, and TIGIT, which are critical targets in cancer immunotherapy.
- These receptors are not always on the cell surface, with significant portions residing in intracellular vesicles, and their distinct subcellular localizations remain unclear.
Approach:
- Quantitative imaging was used to analyze the subcellular distributions and plasma membrane insertion of five key inhibitory receptors.
- Proximity proteomics and biochemical analysis investigated the association of these receptors with trafficking adaptors.
- The study compared the subcellular localization of CTLA-4, PD-1, LAG3, TIM3, and TIGIT.
Key Points:
- The five inhibitory receptors exhibited discrete subcellular distributions.
- CTLA-4 displayed the most distinct distribution, associating with lysosomal-derived vesicles and the sorting nexin 1/2/5/6 machinery.
- No evidence for specific vesicle subtypes driving these distributions was found.
Conclusions:
- Distinct subcellular distributions of inhibitory receptors are driven by divergent trafficking pathways through shared vesicular structures.
- This detailed characterization provides a foundation for investigating inhibitory receptor trafficking and its therapeutic applications in cancer immunotherapy.
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