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碘化物对甲状腺细胞中主要组织相容性复合体I类基因表达的抑制作用涉及增强子A和转录因子核因子κB。

Iodide suppression of major histocompatibility class I gene expression in thyroid cells involves enhancer A and the transcription factor NF-kappa B.

作者信息

Taniguchi S I, Shong M, Giuliani C, Napolitano G, Saji M, Montani V, Suzuki K, Singer D S, Kohn L D

机构信息

Cell Regulation Section, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892, USA.

出版信息

Mol Endocrinol. 1998 Jan;12(1):19-33. doi: 10.1210/mend.12.1.0052.

Abstract

High concentrations of iodide can induce transient, clinical improvement in patients with autoimmune Graves' disease. Previous work has related this iodide action to the autoregulatory effect of iodide on the growth and function of the thyroid; more recently, we additionally related this to the ability of iodide to suppress major histocompatibility (MHC) class I RNA levels and antigen expression on thyrocytes. In this report, we describe a transcriptional mechanism involved in iodide suppression of class I gene expression, which is potentially relevant to the autoregulatory action of iodide. Transfection experiments in FRTL-5 cells show that iodide decreases class I promoter activity and that this effect can be ascribed to the ability of iodide to modulate the formation of two specific protein/DNA complexes with enhancer A, -180 to -170 bp, of the class 1 5'-flanking region. Thus, iodide decreases the formation of Mod-1, an enhancer A complex involving the p50 subunit of NF-kappa B and a c-fos family member, fra-2, which was previously shown to be important in the suppression of class I levels by hydrocortisone. Unlike hydrocortisone, iodide also increases the formation of a complex with enhancer A, which we show, in antibody shift experiments, is a heterodimer of the p50 and p65 subunits of NF-kappa B. The changes in these complexes are not duplicated by chloride and are related to the action of iodide on class I RNA levels by the following observations. First, FRTL-5 thyroid cells with an aged phenotype coincidentally lose the ability of iodide to decrease MHC class I RNA levels and to induce changes in either complex. Second, the effect of iodide on class I RNA levels and on enhancer A complex formation with Mod-1 and the p50/p65 heterodimer is inhibited by agents that block the inositol phosphate, Ca++, phospholipase A2, arachidonate signal transduction pathway: acetylsalicylate, indomethacin, and 5,8,11,14-eicosatetraynoic acid. Interestingly, iodide can also decrease formation of the Mod-1 complex and increase formation of the complex with the p50/p65 subunits of NF-kappa B when the NF-kappa B enhancer sequence from the Ig kappa light chain, rather than enhancer A, is used as probe; and both actions mimic the action of a phorbol ester. This suggests that iodide may regulate complex formation with NF-kappa B regulatory elements on multiple genes associated with growth and function, providing a potential mechanism relating the autoregulatory action of iodide on thyroid cells and its action on class I gene expression.

摘要

高浓度碘化物可使自身免疫性格雷夫斯病患者出现短暂的临床症状改善。此前的研究已将这种碘化物作用与碘化物对甲状腺生长和功能的自身调节作用联系起来;最近,我们还将其与碘化物抑制甲状腺细胞上主要组织相容性(MHC)I类RNA水平和抗原表达的能力联系起来。在本报告中,我们描述了一种参与碘化物抑制I类基因表达的转录机制,这可能与碘化物的自身调节作用有关。在FRTL-5细胞中的转染实验表明,碘化物可降低I类启动子活性,且这种作用可归因于碘化物调节与I类5'侧翼区增强子A(-180至-170 bp)形成两种特异性蛋白质/DNA复合物的能力。因此,碘化物可减少Mod-1的形成,Mod-1是一种涉及NF-κB p50亚基和c-fos家族成员fra-2的增强子A复合物,此前已证明其在氢化可的松抑制I类水平中起重要作用。与氢化可的松不同,碘化物还可增加与增强子A形成的复合物,我们在抗体迁移实验中表明,该复合物是NF-κB p50和p65亚基的异二聚体。这些复合物的变化不能被氯化物复制,并且通过以下观察结果与碘化物对I类RNA水平的作用相关。首先,具有衰老表型的FRTL-5甲状腺细胞同时丧失了碘化物降低MHC I类RNA水平和诱导任何一种复合物变化的能力。其次,碘化物对I类RNA水平以及与Mod-1和p50/p65异二聚体形成增强子A复合物的作用受到阻断肌醇磷酸、Ca++、磷脂酶A2、花生四烯酸信号转导途径的试剂的抑制:乙酰水杨酸、吲哚美辛和5,8,11,14-二十碳四烯酸。有趣的是,当使用来自Igκ轻链的NF-κB增强子序列而非增强子A作为探针时,碘化物也可减少Mod-1复合物的形成并增加与NF-κB p50/p65亚基形成的复合物;并且这两种作用都模拟了佛波酯的作用。这表明碘化物可能调节与生长和功能相关的多个基因上与NF-κB调节元件的复合物形成,为碘化物对甲状腺细胞的自身调节作用及其对I类基因表达的作用提供了一种潜在机制。

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