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Published on: March 24, 2014
Protein kinase C-θ clustering at immunological synapses amplifies effector responses in NK cells
Ernesto Merino1, Thushara P Abeyweera, Matthew A Firth
1Immunology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10065, USA.
Abstract:
In lymphocytes, stimulation of cell surface activating receptors induces the formation of protein microclusters at the plasma membrane that contain the receptor itself, along with other signaling molecules. Although these microclusters are generally thought to be crucial for promoting downstream cellular responses, evidence that specifically links clustering potential to signaling output is lacking. We found that protein kinase C-θ (PKCθ), a key signaling molecule in multiple lymphocyte subsets, formed microclusters in activated NK cells. These microclusters coalesced within the immunological synapse between the NK cell and its target cell. Clustering was mediated by the regulatory region of PKCθ and specifically required a putative phosphotyrosine-binding site within its N-terminal C2 domain. Whereas expression of wild-type PKCθ rescued the cytokine production defect displayed by PKCθ-deficient NK cells, expression of a PKCθ point-mutant incapable of forming microclusters had little to no effect. Hence, PKCθ clustering was necessary for optimal effector function. Notably, only receptors containing ITAMs induced PKCθ microclusters on their own, explaining previous observations that ITAM-coupled receptors promote stronger activating signals and effector responses than do receptors lacking these motifs. Taken together, our results provide a cell biological basis for the role of PKCθ clustering during NK cell activation, and highlight the importance of subcellular compartmentalization for lymphocyte signal transduction.
Insights
Protein kinase C-theta (PKCθ) microcluster formation is essential for natural killer (NK) cell activation and cytokine production. This clustering, mediated by PKCθ
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Lymphocyte activation involves protein microcluster formation at the plasma membrane.
- The direct link between microcluster formation and downstream signaling output remains unclear.
Purpose of the Study:
- To investigate the role of protein kinase C-theta (PKCθ) microclustering in natural killer (NK) cell activation.
- To determine the molecular mechanisms underlying PKCθ microcluster formation and its impact on effector function.
Main Methods:
- Studied PKCθ microcluster formation in activated NK cells.
- Utilized PKCθ point-mutants to assess the necessity of clustering for function.
- Investigated the role of ITAM-containing receptors in inducing PKCθ microclusters.
Main Results:
- PKCθ forms microclusters within the immunological synapse of activated NK cells.
- PKCθ clustering is mediated by its regulatory region and requires a phosphotyrosine-binding site.
- PKCθ clustering is necessary for optimal NK cell cytokine production and effector function.
- ITAM-coupled receptors specifically induce PKCθ microclusters.
Conclusions:
- PKCθ microclustering is a critical cell biological mechanism for NK cell activation.
- Subcellular compartmentalization of PKCθ is vital for lymphocyte signal transduction.
- The findings explain differential signaling strengths based on receptor motifs like ITAMs.
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