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MKP-1 regulates cytokine mRNA stability through selectively modulation subcellular translocation of AUF1
Hong Yu1, Yuhao Sun, Courtney Haycraft
1Department of Craniofacial Biology and the Center for Oral Health Research, Medical University of South Carolina, SC 29425, United States.
Abstract:
MAPK phosphatase-1 (MKP-1)/dual specificity protein phosphatase-1 (DUSP-1) is a negative regulator of the host inflammatory response to infection. However, the mechanisms underlying the regulation of cytokine expression by MKP-1, especially at the post-transcriptional level, have not been fully delineated. In the current study, MKP-1 specifically dephosphorylated activated MAPK responses and attenuated LPS-induced IL-6, IL-10, and TNF-α expression. In addition, MKP-1 was important in destabilizing cytokine mRNAs. In LPS-stimulated rat macrophages with overexpressed MKP-1, half-lives of IL-6, IL-10 and TNF-α mRNAs were significantly reduced compared to controls. Conversely, half-lives of IL-6, IL-10, and TNF-α mRNAs were significantly increased in bone marrow macrophages derived from MKP-1 knock out (KO) mice compared with macrophages derived from MKP-1 wild type (WT) mice. Furthermore, MKP-1 promoted translocation of RNA-binding protein (RNA-BP) ARE/poly-(U) binding degradation factor 1 (AUF1) from the nucleus to the cytoplasm in response to LPS stimulation as evidenced by Western blot and immunofluorescent staining. Knockdown AUF1 mRNA expression by AUF1 siRNA in MKP-1 WT bone marrow macrophages significantly delayed degradation of IL-6, IL-10 and TNF- α mRNAs compared with controls. Finally, AUF1 was immunoprecipitated with the RNA complex in cellular lysates derived from bone marrow macrophages of MKP-1 KO vs. WT mice, which had increased AUF1-bound target mRNAs, including IL-6, IL-10, and TNF-α in WT macrophages compared with MKP-1 KO macrophages. Thus, this work provides new mechanistic insight of MKP-1 signaling and regulation of cytokine mRNA stability through RNA binding proteins in response to inflammatory stimuli.
Insights
MAPK phosphatase-1 (MKP-1) regulates inflammation by destabilizing cytokine mRNAs. It promotes RNA-binding protein AUF1 translocation, leading to reduced IL-6, IL-10, and TNF-α mRNA stability.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- MAPK phosphatase-1 (MKP-1)/dual specificity protein phosphatase-1 (DUSP-1) is a key negative regulator of inflammatory responses.
- The precise mechanisms by which MKP-1 controls cytokine expression, particularly at the post-transcriptional level, remain incompletely understood.
Purpose of the Study:
- To elucidate the role of MKP-1 in regulating cytokine mRNA stability and expression during inflammatory responses.
- To investigate the involvement of RNA-binding proteins in MKP-1-mediated cytokine regulation.
Main Methods:
- Assessed the impact of MKP-1 on LPS-induced cytokine (IL-6, IL-10, TNF-α) expression and mRNA half-life in macrophages.
- Utilized MKP-1 knockout (KO) and wild-type (WT) mice models.
- Examined the translocation of RNA-binding protein AUF1 using Western blot and immunofluorescence.
- Investigated the effect of AUF1 knockdown on cytokine mRNA degradation.
- Performed immunoprecipitation to assess AUF1-RNA complex formation.
Main Results:
- MKP-1 dephosphorylated MAPK, attenuated LPS-induced IL-6, IL-10, and TNF-α expression, and destabilized their mRNAs.
- Overexpression of MKP-1 reduced cytokine mRNA half-lives, while MKP-1 KO increased them.
- MKP-1 promoted AUF1 nuclear-to-cytoplasmic translocation.
- AUF1 knockdown delayed cytokine mRNA degradation.
- WT macrophages showed increased AUF1-bound target mRNAs compared to MKP-1 KO macrophages.
Conclusions:
- MKP-1 plays a critical role in regulating inflammatory cytokine mRNA stability.
- MKP-1 enhances cytokine mRNA decay by promoting the translocation and activity of the RNA-binding protein AUF1.
- This study provides novel mechanistic insights into MKP-1-mediated post-transcriptional regulation of inflammatory responses.
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