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Published on: September 28, 2018
A novel role for p21-activated protein kinase 2 in T cell activation
Peter C Chu1, Jun Wu, X Charlene Liao
1Rigel Inc., 1180 Veterans Boulevard, South San Francisco, CA 94080, USA.
Abstract:
To identify novel components of the TCR signaling pathway, a large-scale retroviral-based functional screen was performed using CD69 expression as a marker for T cell activation. In addition to known regulators, two truncated forms of p21-activated kinase 2 (PAK2), PAK2DeltaL(1-224) and PAK2DeltaS(1-113), both lacking the kinase domain, were isolated in the T cell screen. The PAK2 truncation, PAK2DeltaL, blocked Ag receptor-induced NFAT activation and TCR-mediated calcium flux in Jurkat T cells. However, it had minimal effect on PMA/ionomycin-induced CD69 up-regulation in Jurkat cells, on anti-IgM-mediated CD69 up-regulation in B cells, or on the migratory responses of resting T cells to chemoattractants. We show that PAK2 kinase activity is increased in response to TCR stimulation. Furthermore, a full-length kinase-inactive form of PAK2 blocked both TCR-induced CD69 up-regulation and NFAT activity in Jurkat cells, demonstrating that kinase activity is required for PAK2 function downstream of the TCR. We also generated a GFP-fused PAK2 truncation lacking the Cdc42/Rac interactive binding region domain, GFP-PAK2(83-149). We show that this construct binds directly to the kinase domain of PAK2 and inhibits anti-TCR-stimulated T cell activation. Finally, we demonstrate that, in primary T cells, dominant-negative PAK2 prevented anti-CD3/CD28-induced IL-2 production, and TCR-induced CD40 ligand expression, both key functions of activated T cells. Taken together, these results suggest a novel role for PAK2 as a positive regulator of T cell activation.
Insights
p21-activated kinase 2 (PAK2) plays a crucial role in T cell activation. This study identifies PAK2 as a novel positive regulator in the T cell receptor (TCR) signaling pathway, essential for T cell function.
Area of Science:
- Immunology
- Molecular Biology
- Cell Signaling
Background:
- The T cell receptor (TCR) signaling pathway is critical for adaptive immunity.
- Identifying novel components of this pathway is essential for understanding T cell activation and developing immunotherapies.
Purpose of the Study:
- To identify novel components regulating T cell activation via a functional screen.
- To elucidate the role of p21-activated kinase 2 (PAK2) in TCR signaling.
Main Methods:
- Large-scale retroviral-based functional screen using CD69 expression as a T cell activation marker.
- Utilized Jurkat T cells and primary T cells for functional assays.
- Employed truncated and kinase-inactive PAK2 constructs to assess function.
Main Results:
- Identified truncated PAK2 forms, PAK2DeltaL and PAK2DeltaS, involved in T cell activation.
- PAK2 kinase activity is upregulated upon TCR stimulation and is required for TCR-induced CD69 expression and NFAT activation.
- Dominant-negative PAK2 inhibited IL-2 production and CD40 ligand expression in primary T cells.
Conclusions:
- p21-activated kinase 2 (PAK2) functions as a novel positive regulator in the TCR signaling pathway.
- PAK2 kinase activity is essential for TCR-mediated T cell activation.
- PAK2 plays a significant role in key T cell functions, including cytokine production and co-stimulatory molecule expression.
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