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2B4 (CD244)-mediated activation of cytotoxicity and IFN-gamma release in human NK cells involves distinct pathways
S S Chuang1, P R Kumaresan, P A Mathew
1Department of Molecular Biology and Immunology and Institute for Cancer Research, University of North Texas Health Science Center, Fort Worth, TX 76107, USA.
Insights
The 2B4 immune receptor activates Natural Killer (NK) cells, but its signaling pathway was unclear. This study reveals 2B4 activates NK cell functions through complex interactions involving LAT, Ras, Raf, ERK, and p38 signaling pathways.
Area of Science:
- Immunology
- Cellular Signaling
Background:
- 2B4 (CD244) is an immune receptor expressed on NK cells, T cells, basophils, and monocytes.
- 2B4 activation enhances NK cell cytotoxicity, cytokine secretion, and invasiveness.
- The precise signaling mechanisms underlying 2B4-mediated NK cell activation remain largely unknown.
Purpose of the Study:
- To elucidate the signaling pathways involved in 2B4-mediated activation of NK cells.
- To investigate the role of various signaling molecules in 2B4-induced NK cell functions.
Main Methods:
- Cross-linking of 2B4 on the human NK cell line YT.
- Analysis of activator protein-1 (AP-1) DNA binding activity.
- Treatment with specific signaling pathway inhibitors (Ras/Raf, MAPK, transcription inhibitors).
- Assessment of association between 2B4 and LAT (linker for activation of T cells).
Main Results:
- 2B4 cross-linking increased AP-1 DNA binding activity in YT cells.
- 2B4-mediated cytotoxicity is dependent on Ras/Raf and involves ERK1/2 and p38 MAPK pathways.
- IFN-gamma release is inhibited by transcription and p38 inhibitors, suggesting distinct pathways for cytotoxicity and cytokine release.
- 2B4 constitutively associates with LAT, indicating a LAT-dependent signaling pathway.
Conclusions:
- 2B4-mediated NK cell activation involves a complex signaling network including LAT, Ras, Raf, ERK, and p38.
- Cytolytic function and cytokine production downstream of 2B4 activation are regulated by distinct signaling pathways.
Abstract:
2B4 (CD244), a member of the CD2 subset of the Ig superfamily receptors, is expressed on all human NK cells, a subpopulation of T cells, basophils and monocytes. 2B4 activates NK cell mediated cytotoxicity, induces secretion of IFN-gamma and matrix metalloproteinases, and NK cell invasiveness. Although there have been several molecules shown to interact with 2B4, the signaling mechanism of 2B4-mediated activation of NK cells is still unknown. In this study, we found cross-linking of 2B4 on YT cells, a human NK cell line, results in the increased DNA binding activity of activator protein-1 (AP-1), an important regulator of nuclear gene expression in leukocytes. We investigated the possible role of various signaling molecules that may be involved in the activation of lytic function of YT cells via 2B4. Treatment of YT cells with various specific inhibitors indicate that 2B4-stimulation of YT cells in spontaneous and Ab-dependent cytotoxicity is Ras/Raf dependent and involves multiple MAPK signaling pathways (ERK1/2 and p38). However, only inhibitors of transcription and p38 inhibited 2B4-mediated IFN-gamma release indicating distinct pathways are involved in cytotoxicity and cytokine release. In this study we also show that 2B4 constitutively associates with the linker for activation of T cells (LAT) and that 2B4 may mediate NK cell activation via a LAT-dependent signaling pathway. These results indicate that 2B4-mediated activation of NK cells involves complex interactions involving LAT, Ras, Raf, ERK and p38 and that cytolytic function and cytokine production may be regulated by distinct pathways.
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