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Updated: May 22, 2026

In Vitro Differentiation of Naive CD4+ T Cells into Pathogenic Th17 Cells in Mouse
Published on: October 25, 2024
Protein kinase C-θ promotes Th17 differentiation via upregulation of Stat3
Myung-Ja Kwon1, Jian Ma, Yan Ding
1Division of Immunology, Beckman Research Institute of the City of Hope, Duarte, CA 91010, USA.
Abstract:
Although protein kinase C-θ (PKC-θ)-deficient mice are resistant to the induction of Th17-dependent experimental autoimmune encephalomyelitis, the function of PKC-θ in Th17 differentiation remains unknown. In this article, we show that purified, naive CD4 PKC-θ(-/-) T cells were defective in Th17 differentiation, whereas Th1 and Th2 differentiation appeared normal. Activation of PKC-θ with PMA promoted Th17 differentiation in wild type (WT) but not PKC-θ(-/-) T cells. Furthermore, PKC-θ(-/-) T cells had notably lower levels of Stat3, a transcription factor required for Th17 differentiation, and PMA markedly stimulated the expression of Stat3 in WT but not PKC-θ(-/-) T cells. In contrast, activation of Stat4 and Stat6, which are critical for Th1 and Th2 differentiation, was normal in PKC-θ(-/-) T cells. Forced expression of Stat3 significantly increased Th17 differentiation in PKC-θ(-/-) T cells, suggesting that reduced Stat3 levels were responsible for impaired Th17 differentiation, and that Stat3 lies downstream of PKC-θ. Constitutively active PKC-θ, or WT PKC-θ activated by either PMA or TCR cross-linking, stimulated expression of a luciferase reporter gene driven by the Stat3 promoter. PKC-θ-mediated activation of the Stat3 promoter was inhibited by dominant-negative AP-1 and IκB kinase-β, but stimulated by WT AP-1 and IκB kinase-β, suggesting that PKC-θ stimulates Stat3 transcription via the AP-1 and NF-κB pathways. Lastly, conditions favoring Th17 differentiation induced the highest activation level of PKC-θ. Altogether, the data indicate that PKC-θ integrates the signals from TCR signaling and Th17 priming cytokines to upregulate Stat3 via NF-κB and AP-1, resulting in the stimulation of Th17 differentiation.
Insights
Protein kinase C-θ (PKC-θ) is crucial for Th17 cell differentiation by upregulating Stat3. PKC-θ integrates signals to promote Th17 immunity, impacting autoimmune diseases.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Protein kinase C-θ (PKC-θ) plays a role in T cell activation.
- PKC-θ deficient mice are resistant to Th17-dependent experimental autoimmune encephalomyelitis.
- The precise function of PKC-θ in Th17 cell differentiation is not fully understood.
Purpose of the Study:
- To elucidate the role of PKC-θ in the differentiation of T helper 17 (Th17) cells.
- To investigate the molecular mechanisms by which PKC-θ influences Th17 differentiation.
- To determine the relationship between PKC-θ, Stat3, and Th17 cell development.
Main Methods:
- Analysis of Th17 differentiation in PKC-θ(-/-) naive CD4 T cells.
- Stimulation of PKC-θ activity using PMA and assessment of Th17 differentiation.
- Measurement of Stat3, Stat4, and Stat6 expression levels.
- Forced expression of Stat3 in PKC-θ deficient T cells.
- Luciferase reporter assays to study Stat3 promoter activity.
- Investigation of AP-1 and NF-κB pathway involvement.
Main Results:
- PKC-θ deficient T cells exhibit impaired Th17 differentiation but normal Th1/Th2 differentiation.
- PKC-θ activation promotes Th17 differentiation, dependent on Stat3.
- PKC-θ deficiency leads to reduced Stat3 levels, which are restored by forced expression.
- PKC-θ upregulates Stat3 transcription via AP-1 and NF-κB pathways.
- PKC-θ activation is highest under conditions favoring Th17 differentiation.
Conclusions:
- PKC-θ is essential for Th17 cell differentiation.
- PKC-θ regulates Th17 differentiation by upregulating Stat3 expression through the AP-1 and NF-κB signaling pathways.
- PKC-θ acts as an integration point for TCR and cytokine signals to promote Th17 cell development.
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