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Expansion, Purification, and Functional Assessment of Human Peripheral Blood NK Cells
Published on: February 2, 2011
Heat shock protein 70 (Hsp70) stimulates proliferation and cytolytic activity of natural killer cells
G Multhoff1, L Mizzen, C C Winchester
1Department of Hematology/Internistic Oncology, University Hospital Regensburg, Germany. gabriele.multhoff@klinik.uni-regensburg.de
Abstract:
We previously demonstrated that lysis of tumor cells that express Hsp70, the highly stress-inducible member of the HSP70 family, on their plasma membrane is mediated by natural killer (NK) cells. Here, we studied the effects of different proteins of the HSP70 family in combination with interleukin 2 (IL-2) on the proliferation and cytotoxic activity of human NK cells in vitro. Proliferation of NK cells was significantly enhanced by human recombinant Hsp70 (rHsp70) and to a lesser extent by rHsp70homC, the recombinant C-terminal peptide-binding domain derived from Hsp70hom, but not by the constitutive Hsc70 or DnaK, the Escherichia coli analogue of human Hsp70. Even rHsp70 protein alone moderately enhances proliferation and cytolytic activity of NK cells, thus indicating that the stimulatory effect is not strictly dependent on IL-2. NK cells stimulated with rHsp70 protein also exhibit an increased secretion of interferon gamma (IFN-gamma). The phenotypic characterization of NK cells with specificity for Hsp70-expressing tumor cells revealed a CD16dim/CD56bright and increased CD57 and CD94 expression. The cytolytic activity of NK cells also was significantly reduced when a CD94-specific antibody or rHsp70 was added directly before the cytotoxicity assay, whereas other antibodies directed against CD57 and major histocompatibility complex class I molecules or Hsp70 proteins, including Hsc70 and DnaK, did not affect the NK-mediated killing. However, long-term incubation of NK cells with rHsp70 protein enhances not only the proliferative but also the cytolytic response against Hsp70-expressing tumor cells. Our results indicate that the C-terminal domain of Hsp70 protein affects not only the proliferative but also the cytolytic activity of a phenotypically distinct NK cell population with specificity for Hsp70-expressing tumor cells. 1999 International Society for Experimental Hematology.
Insights
Human recombinant Hsp70 (rHsp70) enhances natural killer (NK) cell proliferation and cytotoxic activity, independent of IL-2. This suggests rHsp70’s C-terminal domain stimulates a specific NK cell population targeting Hsp70-expressing tumors.
Area of Science:
- Immunology
- Molecular Biology
- Cancer Research
Background:
- Natural killer (NK) cells mediate lysis of tumor cells expressing heat shock protein 70 (Hsp70).
- The HSP70 family comprises several proteins with distinct functions.
- Interleukin-2 (IL-2) is a key cytokine for NK cell activation.
Purpose of the Study:
- To investigate the effects of different HSP70 family proteins on human NK cell proliferation and cytotoxic activity in vitro.
- To determine the role of Hsp70 in modulating NK cell responses, particularly in combination with IL-2.
Main Methods:
- In vitro study of human NK cells.
- Treatment with recombinant Hsp70 (rHsp70), Hsp70homC, Hsc70, and DnaK, with and without IL-2.
- Assessment of NK cell proliferation, cytotoxic activity, interferon gamma (IFN-gamma) secretion, and cell surface marker expression (CD16, CD56, CD57, CD94).
Main Results:
- rHsp70 significantly enhanced NK cell proliferation and cytotoxic activity, with a lesser effect from Hsp70homC. Hsc70 and DnaK showed no enhancement.
- rHsp70 alone moderately enhanced NK cell proliferation and cytotoxicity, indicating partial IL-2 independence.
- Stimulated NK cells showed increased IFN-gamma secretion and a distinct phenotype (CD16dim/CD56bright, increased CD57 and CD94).
- CD94 blockade or rHsp70 addition reduced cytolytic activity, suggesting CD94 involvement in rHsp70-mediated effects.
Conclusions:
- The C-terminal domain of Hsp70 protein influences both proliferation and cytolytic activity of a specific NK cell population targeting Hsp70-expressing tumor cells.
- rHsp70 acts as a potent stimulator of NK cell function, offering a potential therapeutic avenue in cancer immunotherapy.
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