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通过白细胞介素-4受体的信号转导及其与特应性的相关性。

Signal transduction via the interleukin-4 receptor and its correlation with atopy.

作者信息

Izuhara K, Shirakawa T

机构信息

Department of Clinical Chemistry and Laboratory Medicine, Faculty of Medicine, Kyushu University, Fukuoka 812-8582, Japan.

出版信息

Int J Mol Med. 1999 Jan;3(1):3-10. doi: 10.3892/ijmm.3.1.3.

Abstract

IL-4 and IL-13 are unique cytokines, in that they induce IgE synthesis in B cells and TH2 type differentiation in T cells. Both cytokines exert their biological activities by binding to their functional receptors on target cells. These receptors are thought to be composed as heterodimers, both having the IL-4R alpha chain (IL-4Ralpha) as a component. Among the signal-transducing molecules of IL-4 and IL-13, Stat6, which is activated by these cytokines and recruits to IL-4Ralpha, is essential for the biological activities of these cytokines. Atopy is an inherited tendency, underlying asthma, rhinitis, and eczema, and generating high non-specific IgE and/or high specific IgE against common antigens. Based on information on the molecular mechanism of the signal transduction of IL-4 and IL-13 and on some genetic studies, IL-4Ralpha was assumed to be one gene giving rise to atopy. One polymorphism existing in the IL-4Ralpha gene, Ile50Val, is verified to correlate with atopy by both genetic and functional aspects. On the contrary, the correlation between another polymorphism on the IL-4Ralpha gene, Arg551Gln, and atopy is still controversial. The strategy used in these studies should lead to identification of other genes involved in atopy.

摘要

白细胞介素-4(IL-4)和白细胞介素-13(IL-13)是独特的细胞因子,它们可诱导B细胞合成IgE,并促使T细胞向TH2型分化。这两种细胞因子均通过与靶细胞上的功能性受体结合来发挥其生物学活性。这些受体被认为是由异二聚体组成,二者均含有白细胞介素-4受体α链(IL-4Rα)作为其组成成分。在IL-4和IL-13的信号转导分子中,信号转导及转录激活因子6(Stat6)由这些细胞因子激活并募集至IL-4Rα,它对这些细胞因子的生物学活性至关重要。特应性是一种遗传倾向,是哮喘、鼻炎和湿疹的潜在病因,可产生针对常见抗原的高水平非特异性IgE和/或高水平特异性IgE。基于IL-4和IL-13信号转导的分子机制信息以及一些遗传学研究,IL-4Rα被认为是导致特应性的一个基因。IL-4Rα基因中存在的一种单核苷酸多态性,即Ile50Val,已在遗传学和功能方面均被证实与特应性相关。相反,IL-4Rα基因上的另一种单核苷酸多态性,即Arg551Gln与特应性之间的相关性仍存在争议。这些研究中所采用的策略应有助于鉴定出其他与特应性相关的基因。

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