Journal
JOURNAL OF IMMUNOLOGY
Volume 180, Issue 12, Pages 7869-7877Publisher
AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.180.12.7869
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Funding
- NIAID NIH HHS [R56 AI065566-01A1, R56 AI065566, R01 AI051626, R01 AI065566, AI 051626, R01 AI065566-03, R01 AI051626-05, AI 065566] Funding Source: Medline
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The Tec family tyrosine kinase, IL-2-inducible T cell kinase (Itk), is expressed in T cells and mast cells. Mice lacking Itk exhibit impaired Th2 cytokine secretion; however, they have increased circulating serum IgE, but exhibit few immunological symptoms of allergic airway responses. We have examined the role of Ilk in mast cell function and Fc epsilon RI signaling. We report in this study that Ilk null mice have reduced allergen/IgE-induced histamine release, as well as early airway hyperresponsiveness in vivo. This is due to the increased levels of IgE in the serum of these mice, because the transfer of Itk null bone marrow-derived cultured mast cells into mast cell-deficient W/W-v animals is able to fully rescue histamine release in the W/W-v mice. Further analysis of Ilk null bone marrow-derived cultured mast cells in vitro revealed that whereas they have normal degranulation responses, they secrete elevated levels of cytokines, including IL-13 and TNF-alpha, particularly in response to unliganded IgE. Analysis of biochemical events downstream of the Fc epsilon RI revealed little difference in overall tyrosine phosphorylation of specific substrates or calcium responses; however, these cells express elevated levels of NFAT, which was largely nuclear. Our results suggest that the reduced mast cell response in vivo in Ilk null mice is due to elevated levels of IgE in these mice. Our results also suggest that Itk differentially modulates mast cell degranulation and cytokine production in part by regulating expression and activation of NFAT proteins in these cells.
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