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甲状腺的过氧化氢生成可被 Th2 细胞因子 IL-4 和 IL-13 通过增加双氧化酶 2 及其成熟因子 DUOXA2 的表达来增强。

Thyroid hydrogen peroxide production is enhanced by the Th2 cytokines, IL-4 and IL-13, through increased expression of the dual oxidase 2 and its maturation factor DUOXA2.

机构信息

Institut de Recherche Interdisciplinaire en Biologie Humaine et Moléculaire (IRIBHM), Université libre de Bruxelles (ULB), 808 route de Lennik, Brussels, Belgium.

出版信息

Free Radic Biol Med. 2013 Mar;56:216-25. doi: 10.1016/j.freeradbiomed.2012.09.003. Epub 2012 Sep 23.

Abstract

The dual oxidases (DUOX) 1 and 2 constitute the major components of the thyroid H(2)O(2)-generating system required for thyroid hormone synthesis. With their maturation factor, DUOXA1 or DUOXA2, they share the same bidirectional promoter allowing coexpression of DUOX/DUOXA in the same tissue. However, the molecular mechanisms regulating their transcription in the human thyroid gland are not well characterized yet. Inflammatory molecules associated with autoimmune thyroid diseases have been shown to repress the thyroid function by down-regulating the expression of the major thyroid differentiation markers. These findings led us to investigate the effects of the main cytokines involved in Hashimoto thyroiditis (IFN-γ) and Graves' diseases (IL-4/IL-13) on the transcriptional regulation of DUOX and their corresponding DUOXA genes in thyroid cells. Human thyrocytes exposed to the Th2 cytokines IL-4 and IL-13 showed up-regulation of DUOX2 and DUOXA2 genes but not DUOX1/DUOXA1. The DUOX2/DUOXA2 induction was rapid and associated with a significant increase of calcium-stimulated extracellular H(2)O(2) generation. IFN-γ treatment inhibited DUOX gene expression and repressed the Th2 cytokine-dependent DUOX2/DUOXA2 expression. In another DUOX-expressing model, the human intestinal Caco-2 cell line, expression of DUOX2 and DUOXA2 mRNA was also positively modulated by IL-4 and IL-13. Analysis of the IL-4 signaling pathway revealed that the JAK1-STAT6 cascade activated by the IL-4 type 2 receptor is required for DUOX2/DUOXA2 induction. The present data open new perspectives for a better understanding of the pathophysiology of thyroid autoimmune diseases considering DUOX2-mediated oxidative damages.

摘要

双氧化酶(DUOX)1 和 2 构成了甲状腺 H(2)O(2)生成系统的主要组成部分,该系统是甲状腺激素合成所必需的。它们与成熟因子 DUOXA1 或 DUOXA2 一起,共享同一个双向启动子,允许在同一组织中共同表达 DUOX/DUOXA。然而,调节人甲状腺中它们转录的分子机制尚未得到很好的描述。与自身免疫性甲状腺疾病相关的炎症分子已被证明通过下调主要甲状腺分化标志物的表达来抑制甲状腺功能。这些发现促使我们研究与桥本甲状腺炎(IFN-γ)和格雷夫斯病(IL-4/IL-13)相关的主要细胞因子对甲状腺细胞中 DUOX 和其相应 DUOXA 基因转录调节的影响。暴露于 Th2 细胞因子 IL-4 和 IL-13 的人甲状腺细胞显示 DUOX2 和 DUOXA2 基因上调,但 DUOX1/DUOXA1 没有上调。DUOX2/DUOXA2 的诱导是快速的,并与钙刺激的细胞外 H(2)O(2)生成的显著增加相关。IFN-γ 处理抑制 DUOX 基因表达,并抑制 Th2 细胞因子依赖性 DUOX2/DUOXA2 表达。在另一个表达 DUOX 的模型中,人肠 Caco-2 细胞系中,IL-4 和 IL-13 也正向调节 DUOX2 和 DUOXA2 mRNA 的表达。对 IL-4 信号通路的分析表明,IL-4 型 2 受体激活的 JAK1-STAT6 级联反应是 DUOX2/DUOXA2 诱导所必需的。目前的数据为更好地理解甲状腺自身免疫疾病的病理生理学开辟了新的前景,考虑到 DUOX2 介导的氧化损伤。

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