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Updated: Jun 1, 2025

Isolation and Th17 Differentiation of Naïve CD4 T Lymphocytes
Published on: September 26, 2013
mtSTAT3 suppresses rheumatoid arthritis by regulating Th17 and synovial fibroblast inflammatory cell death with
Seon-Yeong Lee1,2, Jeonghyeon Moon3, A Ram Lee1,2
1Lab of Translational ImmunoMedicine, Catholic Research Institute of Medical Science, College of Medicine, The Catholic University of Korea, Seoul, Republic of Korea.
Abstract:
Th17 cells are activated by STAT3 factors in the nucleus, and these factors are correlated with the pathologic progression of rheumatoid arthritis (RA). Recent studies have demonstrated the presence of STAT3 in mitochondria, but its function is unclear. We investigated the novel role of mitochondrial STAT3 (mitoSTAT3) in Th17 cells and fibroblast-like synoviocytes (FLSs) and analyzed the correlation of mitoSTAT3 with RA. We used a collagen-induced arthritis (CIA) mouse model to determine the effect of mitochondrial STAT3. We observed changes in the RA mouse model via the use of a mitochondrial STAT3-inducing vector and inhibitor. We observed the accumulation of abnormal autophagosomes, increased inflammatory cell death signaling, and decreased mitoSTAT3 activity in FLSs from both patients with RA and patients with IL-17-treated FLSs. We first discovered that IL-17 increased the accumulation of abnormal autophagosomes and the expression of inflammatory cell death factors in synovial fibroblasts and decreased mitoSTAT3 activation. In a mouse model of CIA, arthritis and joint inflammation were decreased by injection vectors that induced mitoSTAT3 overexpression. The abnormal accumulation of autophagosomes and the expression of inflammatory cell death factors were also decreased in these mice. In mouse and human immune cells, ZnSO4, an inducer of mitochondrial STAT3, decreases the production of reactive oxygen species, the IL-17 concentration, and differentiation into Th17 cells. However, mitoSTAT3 blockade accelerated the development of arthritis, inflammatory cell death, and abnormal autophagosome/autophagolysosome formation. Therefore, this study suggests a novel inhibitory mechanism of RA using mitoSTAT3 via the regulation of autophagy, Th17 differentiation, and inflammatory cell death.
Insights
Mitochondrial STAT3 (mitoSTAT3) plays a protective role in rheumatoid arthritis (RA) by regulating autophagy and Th17 cell differentiation, offering a novel therapeutic target for RA treatment.
Area of Science:
- Immunology
- Cell Biology
- Rheumatology
Background:
- Signal transducer and activator of transcription 3 (STAT3) is crucial for T helper 17 (Th17) cell activation and is implicated in rheumatoid arthritis (RA) pathogenesis.
- The presence and function of STAT3 within mitochondria (mitoSTAT3) remain largely unexplored, particularly in the context of RA.
Purpose of the Study:
- To investigate the novel role of mitoSTAT3 in Th17 cells and fibroblast-like synoviocytes (FLSs).
- To analyze the correlation of mitoSTAT3 with RA pathogenesis and explore its potential as a therapeutic target.
Main Methods:
- Utilized a collagen-induced arthritis (CIA) mouse model to study the effects of mitoSTAT3.
- Employed mitochondrial STAT3-inducing vectors and inhibitors to modulate mitoSTAT3 activity in vivo and in vitro.
- Analyzed autophagosome accumulation, inflammatory cell death signaling, and Th17 cell differentiation in response to mitoSTAT3 modulation.
Main Results:
- Decreased mitoSTAT3 activity, increased abnormal autophagosomes, and enhanced inflammatory cell death were observed in FLSs from RA patients and IL-17-treated FLSs.
- Overexpression of mitoSTAT3 in a CIA mouse model reduced arthritis severity, joint inflammation, abnormal autophagosome accumulation, and inflammatory cell death.
- ZnSO4, a mitoSTAT3 inducer, reduced reactive oxygen species, IL-17 levels, and Th17 cell differentiation in immune cells.
- Blockade of mitoSTAT3 exacerbated arthritis, inflammatory cell death, and autophagosome/autophagolysosome dysfunction.
Conclusions:
- MitoSTAT3 plays a critical inhibitory role in RA pathogenesis.
- MitoSTAT3 regulates autophagy, Th17 cell differentiation, and inflammatory cell death, presenting a novel therapeutic strategy for RA.
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