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Published on: April 23, 2017
Ligand dimensions are important in controlling NK-cell responses
Joanna Brzostek1, Jian-Guo Chai, Friedemann Gebhardt
1Department of Immunology, Wright-Fleming Institute, Imperial College London, London, UK.
Insights
Ligand size influences natural killer (NK) cell responses. Smaller H60a and H-2K(b) ligands enhance NK cell activation and inhibition, respectively, revealing size-dependent receptor triggering in lymphocytes.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Protein segregation at cell-cell contacts regulates lymphocyte function.
- Ligand size is a potential factor in modulating immune cell responses.
Purpose of the Study:
- To investigate how ligand dimensions affect mouse natural killer (NK) cell activation and inhibition.
- To explore the role of ligand size in NKG2D and Ly49C receptor-mediated signaling.
Main Methods:
- Engineered elongated forms of H60a and H-2K(b) ligands expressed in RMA and CHO cell lines.
- Assessed NK cell lysis, IFN-gamma production, NKG2D binding, and NK-cell target cell conjugate formation.
Main Results:
- Increased H60a ligand size reduced NK cell lysis without affecting NKG2D binding.
- Elongated H-2K(b) ligand decreased inhibition of NK cell lysis and IFN-gamma production.
- Ligand dimensions impact both NK cell activation and inhibition.
Conclusions:
- Small ligand dimensions are crucial for effective NK cell activation and inhibition.
- Mechanisms of receptor triggering may share common features across different lymphocyte types.
Abstract:
Size-dependent protein segregation at the cell-cell contact interface has been suggested to be critical for regulation of lymphocyte function. We investigated the role of ligand dimensions in regulation of mouse NK-cell activation and inhibition. Elongated forms of H60a, a mouse NKG2D ligand, were generated and expressed stably in the RMA cell line. RMA cells expressing the normal size H60a were lysed efficiently by both freshly isolated and IL-2 stimulated C57BL/6 mouse-derived NK cells; however the level of lysis decreased as the H60a ligand size increased. Importantly, H60a elongation did not affect NKG2D binding, as determined by soluble NKG2D tetramer staining, and by examining NK-cell target cell conjugate formation. CHO cells are efficient at activating NK cells from C57BL/6 mice, and expression of a single chain form of H-2K(b), a ligand for the mouse inhibitory receptor Ly49C, strongly inhibited such activation of Ly49C/I positive NK cells. Elongation of H-2K(b) resulted in decreased inhibition of both lysis and IFN-gamma production by NK cells. These results establish that small ligand dimensions are important for both NK-cell activation and inhibition, and suggest that there are shared features between the mechanisms of receptor triggering on different types of lymphocytes.
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