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Calcitriol Impairs the Secretion of IL-4 and IL-13 in Th2 Cells via Modulating the VDR-Gata3-Gfi1 Axis
Biswajit Biswas1, Shagnik Chattopadhyay1, Sayantee Hazra1
1Department of Bioscience and Biotechnology, Indian Institute of Technology Kharagpur, West Bengal, India.
Abstract:
Calcitriol, the bioactive form of vitamin D, exerts its biological functions by binding to its cognate receptor, the vitamin D receptor (VDR). The indicators of the severity of allergies and asthma have been linked to low vitamin D levels. However, the role of calcitriol in regulating IL-4 and IL-13, two cytokines pivotal to allergic inflammation, remained unclear. Our study observed diminished IL-4 and IL-13 secretion in murine and human Th2 cells treated with calcitriol. In murine Th2 cells, Gata3 expression was attenuated by calcitriol. However, the expression of the transcriptional repressor Gfi1, too, was attenuated in the presence of calcitriol. Ectopic expression of either Gfi1 or VDR impaired the secretion of IL-13 in Th2 cells. In murine Th2 cells, VDR interacted with Gata3 but not Gfi1. Gfi1 significantly impaired Il13 promoter activation, which calcitriol failed to restore. Conversely, calcitriol augmented Gfi1 recruitment to the Il13 promoter. Ecr, a conserved region between these two genes, which enhanced the transactivation of Il4 and Il13 promoters, is essential for calcitriol-mediated suppression of both the genes. Calcitriol augmented the recruitment of VDR to the Il13 promoter and Ecr regions. Gata3 recruitment was significantly impaired at the Il13 and Ecr loci in the presence of calcitriol but increased at the Il4 promoter. Furthermore, the recruitment of the histone deacetylase HDAC1 was universally increased at the promoters of Il4, Il13, and Ecr when calcitriol was present. Together, our data clearly elucidate that calcitriol modulates VDR, Gata3, and Gfi1 to suppress IL-4 and IL-13 production in Th2 cells.
Insights
Calcitriol (vitamin D) suppresses allergic inflammation by reducing IL-4 and IL-13 in Th2 cells. It modulates VDR, Gata3, and Gfi1, impacting cytokine gene expression and histone deacetylase recruitment.
Area of Science:
- Immunology
- Endocrinology
- Molecular Biology
Background:
- Vitamin D, specifically calcitriol, is crucial for immune function.
- Low vitamin D levels are associated with increased allergy and asthma severity.
- The precise mechanisms by which calcitriol regulates key allergic cytokines like IL-4 and IL-13 were not fully understood.
Purpose of the Study:
- To investigate the role of calcitriol in regulating IL-4 and IL-13 production in T helper 2 (Th2) cells.
- To elucidate the molecular pathways and transcription factors involved in calcitriol's effects on allergic inflammation.
Main Methods:
- Treatment of murine and human Th2 cells with calcitriol.
- Analysis of cytokine secretion (IL-4, IL-13) and gene expression (Gata3, Gfi1).
- Chromatin immunoprecipitation (ChIP) assays to assess protein recruitment to target gene promoters (Il4, Il13, Ecr) and histone deacetylase (HDAC1) activity.
Main Results:
- Calcitriol significantly diminished IL-4 and IL-13 secretion in Th2 cells.
- Calcitriol reduced Gata3 expression but also attenuated the repressor Gfi1 expression.
- Calcitriol modulated VDR and Gfi1 interactions with the Il13 promoter and Ecr regions, increasing HDAC1 recruitment and suppressing cytokine production.
Conclusions:
- Calcitriol effectively suppresses IL-4 and IL-13 production in Th2 cells, key mediators of allergic inflammation.
- The mechanism involves the modulation of VDR, Gata3, and Gfi1, alongside increased HDAC1 recruitment to cytokine promoters.
- These findings highlight calcitriol's potential as a therapeutic agent for allergic diseases.
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