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Identification and Characterization of Immunogenic RNA Species in HDM Allergens that Modulate Eosinophilic Lung Inflammation
Published on: May 30, 2020
Peptidoglycan recognition protein 1 promotes house dust mite-induced airway inflammation in mice
Xianglan Yao1, Meixia Gao, Cuilian Dai
11 Cardiovascular and Pulmonary Branch.
Abstract:
Peptidoglycan recognition protein (Pglyrp) 1 is a pattern-recognition protein that mediates antibacterial host defense. Because we had previously shown that Pglyrp1 expression is increased in the lungs of house dust mite (HDM)-challenged mice, we hypothesized that it might modulate the pathogenesis of asthma. Wild-type and Pglyrp1(-/-) mice on a BALB/c background received intranasal HDM or saline, 5 days/week for 3 weeks. HDM-challenged Pglyrp1(-/-) mice showed decreases in bronchoalveolar lavage fluid eosinophils and lymphocytes, serum IgE, and mucous cell metaplasia, whereas airway hyperresponsiveness was not changed when compared with wild-type mice. T helper type 2 (Th2) cytokines were reduced in the lungs of HDM-challenged Pglyrp1(-/-) mice, which reflected a decreased number of CD4(+) Th2 cells. There was also a reduction in C-C chemokines in bronchoalveolar lavage fluid and lung homogenates from HDM-challenged Pglyrp1(-/-) mice. Furthermore, secretion of CCL17, CCL22, and CCL24 by alveolar macrophages from HDM-challenged Pglyrp1(-/-) mice was markedly reduced. As both inflammatory cells and airway epithelial cells express Pglyrp1, bone marrow transplantation was performed to generate chimeric mice and assess which cell type promotes HDM-induced airway inflammation. Chimeric mice lacking Pglyrp1 on hematopoietic cells, not structural cells, showed a reduction in HDM-induced eosinophilic and lymphocytic airway inflammation. We conclude that Pglyrp1 expressed by hematopoietic cells, such as alveolar macrophages, mediates HDM-induced airway inflammation by up-regulating the production of C-C chemokines that recruit eosinophils and Th2 cells to the lung. This identifies a new family of innate immune response proteins that promotes HDM-induced airway inflammation in asthma.
Insights
Peptidoglycan recognition protein 1 (Pglyrp1) plays a role in asthma development. Mice lacking Pglyrp1 showed reduced airway inflammation, suggesting Pglyrp1 on immune cells promotes asthma pathogenesis.
Area of Science:
- Immunology
- Pulmonology
- Allergy and Asthma Research
Background:
- Peptidoglycan recognition protein 1 (Pglyrp1) is an innate immune pattern-recognition protein.
- Pglyrp1 expression increases in house dust mite (HDM)-challenged mouse lungs.
- Pglyrp1's role in asthma pathogenesis was previously unknown.
Purpose of the Study:
- To investigate the role of Pglyrp1 in house dust mite (HDM)-induced asthma.
- To determine which cell types expressing Pglyrp1 contribute to airway inflammation.
Main Methods:
- Wild-type and Pglyrp1(-/-) mice were challenged with intranasal HDM or saline.
- Analysis included bronchoalveolar lavage fluid, serum IgE, lung histology, and cytokine/chemokine levels.
- Bone marrow chimeric mice were used to assess Pglyrp1 expression in hematopoietic versus structural cells.
Main Results:
- HDM-challenged Pglyrp1(-/-) mice exhibited reduced airway eosinophils, lymphocytes, serum IgE, and mucous cell metaplasia.
- A decrease in T helper type 2 (Th2) cytokines and C-C chemokines was observed in Pglyrp1(-/-) mice.
- Chimeric mice lacking Pglyrp1 on hematopoietic cells, not structural cells, showed reduced HDM-induced airway inflammation.
Conclusions:
- Pglyrp1 expressed by hematopoietic cells, like alveolar macrophages, mediates HDM-induced airway inflammation.
- Pglyrp1 promotes asthma by up-regulating C-C chemokines that recruit eosinophils and Th2 cells.
- Pglyrp1 represents a novel target in innate immunity for asthma treatment.
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