Extracellular NK histones promote immune cell anti-tumor activity by inducing cell clusters through binding to CD138
B Martín-Antonio1,2, G Suñe3,4, A Najjar5
1Department of Hematology, Hospital Clinic, IDIBAPS, Carrer Rosselló 149-153, 08036, Barcelona, Spain. bmartina@clinic.cat.
Background:
Natural killer (NK) cells are important anti-tumor cells of our innate immune system. Their anti-cancer activity is mediated through interaction of a wide array of activating and inhibitory receptors with their ligands on tumor cells. After activation, NK cells also secrete a variety of pro-inflammatory molecules that contribute to the final immune response by modulating other innate and adaptive immune cells. In this regard, external proteins from NK cell secretome and the mechanisms by which they mediate these responses are poorly defined.
Methods:
TRANS-stable-isotope labeling of amino acids in cell culture (TRANS-SILAC) combined with proteomic was undertaken to identify early materials transferred between cord blood-derived NK cells (CB-NK) and multiple myeloma (MM) cells. Further in vitro and in vivo studies with knock-down of histones and CD138, overexpression of histones and addition of exogenous histones were undertaken to confirm TRANS-SILAC results and to determine functional roles of this material transferred.
Results:
We describe a novel mechanism by which histones are actively released by NK cells early after contact with MM cells. We show that extracellular histones bind to the heparan sulfate proteoglycan CD138 on the surface of MM cells to promote the creation of immune-tumor cell clusters bringing immune and MM cells into close proximity, and thus facilitating not only NK but also T lymphocyte anti-MM activity.
Conclusion:
This study demonstrates a novel immunoregulatory role of NK cells against MM cells mediated by histones, and an additional role of NK cells modulating T lymphocytes activity that will open up new avenues to design future immunotherapy clinical strategies.
Insights
Natural killer (NK) cells release histones that bind to multiple myeloma (MM) cells, enhancing anti-tumor immune responses. This discovery offers new immunotherapy strategies for MM treatment.
Area of Science:
- Immunology
- Cell Biology
- Cancer Research
Background:
- Natural killer (NK) cells are crucial innate immune cells with anti-tumor functions.
- NK cell activity relies on receptor-ligand interactions and secretion of pro-inflammatory molecules.
- The specific proteins secreted by NK cells and their mechanisms are not fully understood.
Purpose of the Study:
- To identify molecules transferred between NK cells and multiple myeloma (MM) cells.
- To elucidate the functional role of transferred molecules in anti-MM immunity.
- To explore novel immunotherapy strategies for MM.
Main Methods:
- TRANS-stable-isotope labeling of amino acids in cell culture (TRANS-SILAC) coupled with proteomics.
- In vitro and in vivo studies involving histone manipulation (knock-down, overexpression, addition).
- Analysis of CD138's role in immune-tumor cell interactions.
Main Results:
- NK cells actively release histones upon contact with MM cells.
- Extracellular histones bind to CD138 on MM cells, forming immune-tumor cell clusters.
- These clusters enhance anti-MM activity of both NK cells and T lymphocytes.
Conclusions:
- NK cells employ histones as a novel mechanism to regulate MM.
- NK cells modulate T lymphocyte activity against MM via histone transfer.
- This finding opens new avenues for MM immunotherapy development.
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