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Oxidized CaMKII promotes asthma through the activation of mast cells
Jingjing Qu, Danh C. Do, Yufeng Zhou, Elizabeth Luczak, Wayne Mitzner, Mark E. Anderson, Peisong Gao
Jingjing Qu, Danh C. Do, Yufeng Zhou, Elizabeth Luczak, Wayne Mitzner, Mark E. Anderson, Peisong Gao
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Research Article Immunology Pulmonology

Oxidized CaMKII promotes asthma through the activation of mast cells

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Abstract

Oxidation of calmodulin-dependent protein kinase II (ox-CaMKII) by ROS has been associated with asthma. However, the contribution of ox-CaMKII to the development of asthma remains to be fully characterized. Here, we tested the effect of ox-CaMKII on IgE-mediated mast cell activation in an allergen-induced mouse model of asthma using oxidant-resistant CaMKII MMVVδ knockin (MMVVδ) mice. Compared with WT mice, the allergen-challenged MMVVδ mice displayed less airway hyperresponsiveness (AHR) and inflammation. These MMVVδ mice exhibited reduced levels of ROS and diminished recruitment of mast cells to the lungs. OVA-activated bone marrow–derived mast cells (BMMCs) from MMVVδ mice showed a significant inhibition of ROS and ox-CaMKII expression. ROS generation was dependent on intracellular Ca2+ concentration in BMMCs. Importantly, OVA-activated MMVVδ BMMCs had suppressed degranulation, histamine release, leukotriene C4, and IL-13 expression. Adoptive transfer of WT, but not MMVVδ, BMMCs, reversed the alleviated AHR and inflammation in allergen-challenged MMVVδ mice. The CaMKII inhibitor KN-93 significantly suppressed IgE-mediated mast cell activation and asthma. These studies support a critical but previously unrecognized role of ox-CaMKII in mast cells that promotes asthma and suggest that therapies to reduce ox-CaMKII may be a novel approach for asthma.

Authors

Jingjing Qu, Danh C. Do, Yufeng Zhou, Elizabeth Luczak, Wayne Mitzner, Mark E. Anderson, Peisong Gao

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Figure 3

Reduced mast cell numbers in lung tissues of CRE-treated MMVVδ mice.

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Reduced mast cell numbers in lung tissues of CRE-treated MMVVδ mice.
(A ...
(A and B) Representative images of tryptase immunofluorescence (scale bar: 100 μm) and DAB staining (scale bar: 50 μm) in lung tissue sections of PBS- or CRE-challenged WT and MMVVδ mice, 3 mice per group. (C and D) Quantitative data for immunofluorescence (C) and DAB staining (D). Mean ± SEM, n = 5–9 high power field view (HFV) per group. (E) Representative images of coimmunofluorescence staining with c-Kit and ox-CaMKII in the lung tissues of CRE-challenged WT and MMVVδ mice, 3 mice per group. Scale bar: 100 μm (first and third row); 20 μm (second and fourth row). Quantitative data for c-Kit+ cells (F) and ox-CaMKII+c-Kit+ cells (G). Data represent mean ± SEM, n = 7–9 HFV per group. Comparisons were made using 2-tailed Student’s t test between CRE-treated WT vs. MMVVδ. *P < 0.05, **P < 0.01.

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ISSN 2379-3708

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