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变应原相关的人胸腺基质淋巴细胞生成素(TSLP)受体的信号转导依赖于 Janus 激酶功能。

Signal transduction by the atopy-associated human thymic stromal lymphopoietin (TSLP) receptor depends on Janus kinase function.

机构信息

Institute of Biochemistry II, University of Jena Medical School, Nonnenplan 2, D-07743 Jena, Germany.

出版信息

Biol Chem. 2010 Feb-Mar;391(2-3):181-186. doi: 10.1515/bc.2010.029.

Abstract

Thymic stromal lymphopoietin (TSLP) is an interleukin-(IL)-7-like cytokine with emerging pathological importance for the development of atopic diseases such as allergic asthma bronchiale. The TSLP receptor (TSLPR), a heterodimeric type I cytokine receptor, shares the IL-7R alpha-subunit with the IL-7 receptor system. The specific TSLPR alpha-chain shows similarities with the gammac receptor chain, but has some unusual features within the receptor family in both its ligand-binding and cytoplasmic domain. The murine TSLPR signals via the signal transducers and activators of transcription STAT5 and STAT3, but is unique among cytokine receptors in that it activates STATs without the involvement of Janus (JAK) tyrosine kinases, but instead utilizes the Src type kinase Tec. Here, we show by Western blotting and reporter gene experiments in combination with the application of a specific JAK inhibitor that the human TSLP receptor, in contrast, requires the function of JAK1 and JAK2 for STAT activation. Moreover, we demonstrate that the human TSLPR mediates gene regulation not only through STAT5 and STAT3 but has also the potential to mediate transcription via STAT1. Our work should help to understand more thoroughly how TSLP triggers inflammatory responses in the course of atopic diseases.

摘要

胸腺基质淋巴细胞生成素 (TSLP) 是一种白细胞介素-(IL)-7 样细胞因子,对于变态反应性疾病(如过敏性支气管哮喘)的发展具有重要的病理意义。TSLP 受体 (TSLPR) 是一种异二聚体 I 型细胞因子受体,与 IL-7 受体系统共享 IL-7R alpha 亚基。特定的 TSLPR alpha 链与 gammac 受体链具有相似性,但在受体家族中,其配体结合和胞质域都具有一些不寻常的特征。鼠 TSLPR 通过转录信号转导子和激活子 STAT5 和 STAT3 信号转导,但在细胞因子受体中是独一无二的,它在不涉及 Janus (JAK) 酪氨酸激酶的情况下激活 STATs,而是利用 Src 型激酶 Tec。在这里,我们通过 Western blot 和报告基因实验结合应用特定的 JAK 抑制剂表明,人 TSLP 受体相反,需要 JAK1 和 JAK2 的功能才能激活 STAT。此外,我们证明人 TSLPR 不仅可以通过 STAT5 和 STAT3 介导基因调控,而且还具有通过 STAT1 介导转录的潜力。我们的工作应该有助于更深入地了解 TSLP 在变态反应性疾病过程中如何引发炎症反应。

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