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Published on: January 7, 2019
The TLR4-associated phospholipase D1 activation is crucial for Der f 2-induced IL-13 production
H-J Choi1, S-Y Park1, J H Cho1
1Biomedical Research Institute and Department of Biochemistry and Molecular Biology, College of Medicine, Hanyang University, Seoul, Korea.
Background:
House dust mites (HDMs) are the most important source of indoor aeroallergens that contribute to the rising incidence of allergic diseases such as allergic asthma. The major HDM, Der f 2, induces inflammatory cytokine expression. Little is known about the signaling pathway involved.
Objective:
We wanted to define the Der f 2 signaling pathway from its receptor to the transcription factor responsible for IL-13 expression and production.
Methods:
Human bronchial epithelial cells were stimulated with Der f 2. The release and gene expression of IL-13 were measured by means of ELISA and RT-PCR, respectively. In the airway inflammation mouse model, airway responses were assessed using ELISA, histology, BAL fluid, and methacholine responsiveness.
Results:
Here, we show that Der f 2 binds to TLR4 and induces IL-13 expression and production. In the airway inflammation mouse model, Der f 2-induced IL-13 production significantly decreased with treatment of TAK-242, a novel TLR4 inhibitor. Activation of TLR4 by Der f 2 requires the recruitment and activation of Syk, which leads to phosphorylation of PLCγ and membrane translocation of PKCα. p38 MAPK is then activated by PKCα and stimulates PLD1 activity by phosphorylating the Thr147 residue of PLD1. PLD1 activation enhanced binding of ROCK1 to ATF-2 and leads to increased expression of IL-13.
Conclusion:
Our data extend the knowledge for a variety of possible roles of PLD1 in allergic disorders including asthma pathogenesis and suggest possible candidacy of PLD1 as a molecular target for novel therapeutic approaches.
Insights
House dust mite allergen Der f 2 activates Toll-like receptor 4 (TLR4), leading to Interleukin-13 (IL-13) production. This pathway involves Syk, PLCγ, PKCα, p38 MAPK, and PLD1, offering potential therapeutic targets for asthma.
Area of Science:
- Immunology
- Molecular Biology
- Allergology
Background:
- House dust mites (HDMs) are a primary source of indoor allergens.
- HDM allergens, particularly Der f 2, are implicated in allergic diseases like asthma.
- The precise signaling pathways triggered by Der f 2 remain largely undefined.
Purpose of the Study:
- To elucidate the signaling cascade initiated by Der f 2.
- To identify the receptor and transcription factors involved in Interleukin-13 (IL-13) production.
- To explore potential therapeutic targets for HDM-induced allergies.
Main Methods:
- Stimulation of human bronchial epithelial cells with Der f 2.
- Quantification of IL-13 release and gene expression using ELISA and RT-PCR.
- Assessment of airway inflammation in a mouse model, including response to a TLR4 inhibitor (TAK-242).
Main Results:
- Der f 2 binds to Toll-like receptor 4 (TLR4), inducing IL-13 production.
- Inhibition of TLR4 significantly reduced Der f 2-induced IL-13 in vivo.
- The pathway involves sequential activation of Syk, PLCγ, PKCα, p38 MAPK, and PLD1, culminating in ATF-2 activation and IL-13 expression.
Conclusions:
- The study defines a novel signaling pathway for Der f 2-induced IL-13 production via TLR4.
- Phospholipase D1 (PLD1) plays a crucial role in this pathway.
- PLD1 emerges as a potential molecular target for treating allergic disorders, including asthma.
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