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Real-time Live Imaging of T-cell Signaling Complex Formation
Published on: June 23, 2013
Novel protein kinase C θ: coronin 1A complex in T lymphocytes
Kerstin Siegmund1, Nikolaus Thuille2, Nina Posch3
1Department for Pharmacology and Genetics, Division of Translational Cell Genetics, Medical University Innsbruck, Peter Mayr Str. 1a, A-6020, Innsbruck, Austria. kerstin.siegmund@i-med.ac.at.
Background:
Protein kinase C-θ (PKCθ) plays an important role in signal transduction down-stream of the T cell receptor and T cells deficient of PKCθ show impaired NF-κB as well as NFAT/AP-1 activation resulting in strongly decreased IL-2 expression and proliferation. However, it is not yet entirely clear, how the function of PKCθ - upon T cell activation - is regulated on a molecular level.
Findings:
Employing a yeast two-hybrid screen and co-immunoprecipitation analyses, we here identify coronin 1A (Coro1A) as a novel PKCθ-interacting protein. We show that the NH2-terminal WD40 domains of Coro1A and the C2-like domain of PKCθ are sufficient for the interaction. Furthermore, we confirm a physical interaction by GST-Coro1A mediated pull-down of endogenous PKCθ protein. Functionally, wild-type but not Coro1A lacking its actin-binding domain negatively interferes with PKCθ-dependent NF-κB, Cyclin D1 and IL-2 transactivation when analysed with luciferase promoter activation assays in Jurkat T cells. This could be phenocopied by pharmacological inhibitors of actin polymerization and PKC, respectively. Mechanistically, Coro1A overexpression attenuates both lipid raft and plasma membrane recruitment of PKCθ in CD3/CD28-activated T cells. Using primary CD3(+) T cells, we observed that (opposite to PKCθ) Coro1A does not localize preferentially to the immunological synapse. In addition, we show that CD3(+) T cells isolated from Coro1A-deficient mice show impaired IKK/NF-κB transactivation.
Conclusions:
Together, these findings both in Jurkat T cells as well as in primary T cells indicate a regulatory role of Coro1A on PKCθ recruitment and function downstream of the TCR leading to NF-κB transactivation.
Insights
Coronin 1A (Coro1A) interacts with Protein Kinase C-θ (PKCθ), regulating its function in T cell activation. Coro1A
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Protein Kinase C-θ (PKCθ) is crucial for T cell receptor signaling, impacting NF-κB and NFAT/AP-1 activation, IL-2 expression, and proliferation.
- The precise molecular mechanisms regulating PKCθ function during T cell activation remain incompletely understood.
Purpose of the Study:
- To identify novel proteins that interact with PKCθ and regulate its function in T cell activation.
- To elucidate the role of coronin 1A (Coro1A) in PKCθ-mediated signaling pathways.
Main Methods:
- Yeast two-hybrid screening and co-immunoprecipitation to identify interacting proteins.
- Luciferase reporter assays in Jurkat T cells to assess transactivation.
- GST pull-down assays and analysis of primary T cells from Coro1A-deficient mice.
Main Results:
- Coronin 1A (Coro1A) was identified as a novel binding partner of PKCθ, with interaction mediated by Coro1A's WD40 domains and PKCθ's C2-like domain.
- Coro1A negatively impacts PKCθ-dependent NF-κB, Cyclin D1, and IL-2 transactivation, an effect dependent on its actin-binding domain.
- Coro1A overexpression reduces PKCθ recruitment to lipid rafts and the plasma membrane in activated T cells.
- T cells from Coro1A-deficient mice exhibit impaired IKK/NF-κB transactivation.
Conclusions:
- Coronin 1A (Coro1A) acts as a regulator of PKCθ recruitment and function downstream of the T cell receptor (TCR).
- This interaction is critical for NF-κB transactivation, highlighting a novel regulatory pathway in T cell signaling.
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