Posttranscriptional regulation of TNF mRNA: a paradigm of signal-dependent mRNA utilization and its relevance to pathology.

Current directions in autoimmunity Pub Date : 2010-01-01 Epub Date: 2010-02-18 DOI:10.1159/000289197
Panagiota Stamou, Dimitris L Kontoyiannis
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引用次数: 39

Abstract

The relationship between TNF and immune pathology forced an intense research into the regulation of its biosynthesis that extends to multiple mechanisms controlling the utilization of its mRNA. These posttranscriptional mechanisms gradually and variably impose a series of flexible rate-limiting controls to modify the abundance of the TNF mRNA and the rate of its translation in response to environmental signals. Mechanistically, these controls consist of signaling networks converging to RNA-binding proteins and microRNAs, which in turn target a code of secondary or tertiary ribonucleotide structures located on the TNF mRNA. The outcome of these interactions is the stringent control of this mRNA's maturation, localization, turnover and translation. A wealth of molecular and genetic data highlighted that if these posttranscriptional interactions fail, they perturb cellular responses to provide the impetus for TNF-mediated inflammatory disease. Here, we highlight the parameters guiding the posttranscriptional regulation of TNF mRNA and their relevance to homeostasis and pathology.

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TNF mRNA的转录后调控:信号依赖性mRNA利用的范例及其与病理的相关性。
TNF与免疫病理之间的关系迫使人们对其生物合成的调控进行了深入研究,并扩展到控制其mRNA利用的多种机制。这些转录后机制逐渐和可变地施加一系列灵活的限速控制,以改变TNF mRNA的丰度及其翻译速率,以响应环境信号。从机制上讲,这些控制由趋同于rna结合蛋白和microrna的信号网络组成,这些信号网络反过来靶向位于TNF mRNA上的二级或三级核糖核苷酸结构代码。这些相互作用的结果是严格控制mRNA的成熟、定位、周转和翻译。大量的分子和遗传数据强调,如果这些转录后相互作用失败,它们会扰乱细胞反应,从而为tnf介导的炎症性疾病提供动力。在这里,我们强调了指导TNF mRNA转录后调控的参数及其与体内平衡和病理的相关性。
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Cellular mechanisms of TNF function in models of inflammation and autoimmunity. Posttranscriptional regulation of TNF mRNA: a paradigm of signal-dependent mRNA utilization and its relevance to pathology. The first decade of biologic TNF antagonists in clinical practice: lessons learned, unresolved issues and future directions. Role of TNF in pathologies induced by nuclear factor kappaB deficiency. Type I interferon: a new player in TNF signaling.
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