Notch signaling licenses allergic airway inflammation by promoting Th2 cell lymph node egress

Notch信号通路 S1PR1型 过继性细胞移植 免疫学 过敏性炎症 关贸总协定3 T细胞 淋巴结 FOXP3型 RAR相关孤儿受体γ 细胞生物学 屋尘螨 炎症 生物 医学 转录因子 癌症研究 信号转导 免疫球蛋白E 免疫系统 血管内皮生长因子A 生物化学 基因 抗体 血管内皮生长因子 血管内皮生长因子受体
作者
Irma Tindemans,Anne van Schoonhoven,Alex KleinJan,Marjolein J. W. de Bruijn,Melanie Lukkes,Menno van Nimwegen,Anouk van den Branden,Ingrid M. Bergen,Odilia B. J. Corneth,Wilfred F. J. van IJcken,Ralph Stadhouders,Rudi W. Hendriks
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:130 (7): 3576-3591 被引量:21
标识
DOI:10.1172/jci128310
摘要

Allergic asthma is mediated by Th2 responses to inhaled allergens. Although previous experiments indicated that Notch signaling activates expression of the key Th2 transcription factor Gata3, it remains controversial how Notch promotes allergic airway inflammation. Here we show that T cell–specific Notch deficiency in mice prevented house dust mite–driven eosinophilic airway inflammation and significantly reduced Th2 cytokine production, serum IgE levels, and airway hyperreactivity. However, transgenic Gata3 overexpression in Notch-deficient T cells only partially rescued this phenotype. We found that Notch signaling was not required for T cell proliferation or Th2 polarization. Instead, Notch-deficient in vitro–polarized Th2 cells showed reduced accumulation in the lungs upon in vivo transfer and allergen challenge, as Notch-deficient Th2 cells were retained in the lung-draining lymph nodes. Transcriptome analyses and sequential adoptive transfer experiments revealed that while Notch-deficient lymph node Th2 cells established competence for lung migration, they failed to upregulate sphingosine-1-phosphate receptor 1 (S1PR1) and its critical upstream transcriptional activator Krüppel-like factor 2 (KLF2). As this KLF2/S1PR1 axis represents the essential cell-intrinsic regulator of T cell lymph node egress, we conclude that the druggable Notch signaling pathway licenses the Th2 response in allergic airway inflammation via promoting lymph node egress.

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