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Cross-Dressing of Multiple Myeloma Cells Mediated by Extracellular Vesicles Conveying MIC and ULBP Ligands Promotes
Elisabetta Vulpis1, Luisa Loconte1, Chiara Cassone1
1Laboratory Affiliated to Istituto Pasteur Italia-Fondazione Cenci Bolognetti, Department of Molecular Medicine, "Sapienza" University of Rome, 00185 Rome, Italy.
Abstract:
Natural Killer (NK) cells are innate cytotoxic lymphoid cells that play a crucial role in cancer immunosurveillance. NKG2D is an activating receptor that binds to MIC and ULBP molecules typically induced on damaged, transformed, or infected cells. The secretion of NKG2D ligands (NKG2DLs) through protease-mediated cleavage or in an extracellular vesicle (EV) is a mode to control their cell surface expression and a mechanism used by cancer cells to evade NKG2D-mediated immunosurveillance. EVs are emerging as important players in mediating cell-to-cell communication due to their ability to transfer biological material to acceptor cells. Herein, we investigated the spreading of NKG2DLs of both MIC and ULBP molecules through the EV-mediated cross-dressing on multiple myeloma (MM) cells. We focused our attention on two MICA allelic variants, namely MICA*008 and MICA*019, representing the prototype of short and long MICA alleles, respectively, and on ULBP-1, ULBP-2, and ULBP-3. Our findings demonstrate that both ULBP and MICA ligands can be acquired from tumor cells through EVs enhancing NK cell recognition and killing. Moreover, besides MICA, EVs expressing ULBP-1 but not ULBP-2 and 3 were detected in bone marrow aspirates derived from a cohort of MM patients. Our findings shed light on the role of EV-associated MICA allelic variants and ULBP molecules in the modulation of NKG2D-mediated NK cell immunosurveillance in the tumor microenvironment. Moreover, the EV-mediated transfer of NKG2DLs could suggest novel therapeutic approaches based on the usage of engineered nanoparticles aimed at increasing cancer cell immunogenicity.
Insights
Natural Killer (NK) cells use NKG2D ligands (NKG2DLs) to target cancer. Extracellular vesicles (EVs) transfer these NKG2DLs, enhancing NK cell activity against multiple myeloma (MM) and suggesting new cancer immunotherapies.
Area of Science:
- Immunology
- Cancer Biology
- Cell Biology
Background:
- Natural Killer (NK) cells are crucial for cancer immunosurveillance.
- NKG2D receptor activation is key to NK cell function.
- Cancer cells evade NK cell detection by modulating NKG2D ligands (NKG2DLs).
Purpose of the Study:
- To investigate the transfer of NKG2D ligands (MICA and ULBP molecules) via extracellular vesicles (EVs) in multiple myeloma (MM).
- To understand how EV-mediated NKG2DL transfer affects NK cell recognition and killing of MM cells.
- To explore the presence of NKG2DLs on EVs in MM patient samples.
Main Methods:
- Analysis of MICA allelic variants (MICA*008, MICA*019) and ULBP-1, ULBP-2, ULBP-3.
- Investigation of EV-mediated cross-dressing of NKG2DLs on MM cells.
- Detection of NKG2DL-expressing EVs in bone marrow aspirates from MM patients.
Main Results:
- EVs facilitate the acquisition of MICA and ULBP ligands by tumor cells, enhancing NK cell recognition and cytotoxicity.
- EVs expressing MICA and ULBP-1 were identified in MM patient samples.
- EV-mediated transfer of NKG2DLs plays a role in modulating NK cell immunosurveillance within the tumor microenvironment.
Conclusions:
- EV-associated NKG2DLs, including MICA allelic variants and ULBP molecules, are important in NK cell-mediated immunosurveillance in multiple myeloma.
- The transfer of NKG2DLs via EVs can enhance anti-cancer immunity.
- Targeting EV-mediated NKG2DL transfer may offer novel therapeutic strategies for cancer immunotherapy.
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