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Natural Killer Cell Phenotype and Functionality Affected by Exposure to Extracellular Survivin and Lymphoma-Derived
Heather R Ferguson Bennit1,2, Amber Gonda1,2, Janviere Kabagwira1,2
1Division of Biochemistry, Department of Basic Science, Loma Linda University School of Medicine, Loma Linda, CA 92350, USA.
Abstract:
The inherent abilities of natural killer (NK) cells to recognize and kill target cells place them among the first cells with the ability to recognize and destroy infected or transformed cells. Cancer cells, however, have mechanisms by which they can inhibit the surveillance and cytotoxic abilities of NK cells with one believed mechanism for this: their ability to release exosomes. Exosomes are vesicles that are found in abundance in the tumor microenvironment that can modulate intercellular communication and thus enhance tumor malignancy. Recently, our lab has found cancer cell exosomes to contain the inhibitor of apoptosis (IAP) protein survivin to be associated with decreased immune response in lymphocytes and cellular death. The purpose of this study was to explore the effect of survivin and lymphoma-derived survivin-containing exosomes on the immune functions of NK cells. NK cells were obtained from the peripheral blood of healthy donors and treated with pure survivin protein or exosomes from two lymphoma cell lines, DLCL2 and FSCCL. RNA was isolated from NK cell samples for measurement by PCR, and intracellular flow cytometry was used to determine protein expression. Degranulation capacity, cytotoxicity, and natural killer group 2D receptor (NKG2D) levels were also assessed. Lymphoma exosomes were examined for size and protein content. This study established that these lymphoma exosomes contained survivin and FasL but were negative for MHC class I-related chains (MIC)/B (MICA/B) and TGF-β. Treatment with exosomes did not significantly alter NK cell functionality, but extracellular survivin was seen to decrease natural killer group 2D receptor (NKG2D) levels and the intracellular protein levels of perforin, granzyme B, TNF-α, and IFN-γ.
Insights
Cancer cell exosomes, containing survivin, may suppress natural killer (NK) cell anti-cancer functions. Extracellular survivin reduced NK cell receptor NKG2D and key cytotoxic proteins, impacting immune response.
Area of Science:
- Immunology
- Cell Biology
- Cancer Research
Background:
- Natural killer (NK) cells are crucial for identifying and eliminating infected or cancerous cells.
- Cancer cells can evade NK cell surveillance through mechanisms like releasing exosomes.
- Exosomes, prevalent in the tumor microenvironment, mediate intercellular communication and promote tumor progression.
Purpose of the Study:
- To investigate the impact of survivin and exosomes containing survivin from lymphoma cells on NK cell immune functions.
- To analyze the protein and molecular changes in NK cells upon exposure to survivin and lymphoma-derived exosomes.
Main Methods:
- NK cells were isolated from healthy donors and treated with purified survivin protein or exosomes from lymphoma cell lines (DLCL2, FSCCL).
- NK cell functionality was assessed through measurements of degranulation capacity, cytotoxicity, and NKG2D receptor levels.
- Intracellular protein expression (perforin, granzyme B, TNF-α, IFN-γ) and RNA levels were analyzed using flow cytometry and PCR.
Main Results:
- Lymphoma exosomes were confirmed to contain survivin and FasL, but lacked MICA/B and TGF-β.
- Exosome treatment did not significantly alter overall NK cell functionality.
- Extracellular survivin exposure led to a reduction in NKG2D receptor levels and intracellular cytotoxic proteins (perforin, granzyme B, TNF-α, IFN-γ) in NK cells.
Conclusions:
- While lymphoma exosomes did not broadly impair NK cell function, extracellular survivin demonstrably reduces key molecules associated with NK cell cytotoxic potential.
- These findings suggest survivin, particularly in its extracellular form, may play a role in immune evasion by downregulating NK cell effector functions.
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