首页> 外文期刊>Nucleic Acids Research >Post-transcriptional regulation of thioredoxin by the stress inducible heterogenous ribonucleoprotein A18.
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Post-transcriptional regulation of thioredoxin by the stress inducible heterogenous ribonucleoprotein A18.

机译:应激诱导的异源核糖核蛋白A18对硫氧还蛋白的转录后调节。

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摘要

Thioredoxin (TRX) is a key protein of the cellular redox metabolism, which expression is increased in several tumors especially gastric tumors. Even though ultraviolet (UV) and hypoxia specifically induce TRX, the mechanisms that lead to increased TRX levels are still ill defined. Here, we show that the heterogenous ribonucleoprotein A18 (hnRNP A18) RNA Binding Domain (RBD) and the arginine, glycine (RGG) rich domain can bind TRX 3'-untranslated region (3'-UTR) independently but both domains are required for maximal binding. Immunoprecipitation (IP) of hnRNP A18-mRNAs complexes and co-localization of hnRNP A18 and TRX transcripts on ribosomal fractions confirm the interaction of hnRNP A18 with TRX transcripts in cells. Moreover, down regulation of hnRNP A18 correlates with a significant reduction of TRX protein levels. In addition, hnRNP A18 increases TRX translation and interacts with the eukaryotic Initiation Factor 4G (eIF4G), a component of the general translational machinery. Furthermore, hnRNP A18 phosphorylation by the hypoxia inducible GSK3beta increases hnRNP A18 RNA binding activity in vitro and in RKO cells in response to UV radiation. These data support a regulatory role for hnRNP A18 in TRX post-transcriptional expression possibly through a kissing loop model bridging TRX 3'- and 5'-UTRs through eIF4G.
机译:硫氧还蛋白(TRX)是细胞氧化还原代谢的关键蛋白,在某些肿瘤尤其是胃肿瘤中其表达增加。尽管紫外线(UV)和缺氧会特异性诱导TRX,但导致TRX水平升高的机制仍然不清楚。在这里,我们显示异源核糖核蛋白A18(hnRNP A18)RNA结合结构域(RBD)和富含精氨酸,甘氨酸(RGG)的结构域可以独立结合TRX 3'-非翻译区(3'-UTR),但两个结构域都是必需的最大绑定。 hnRNP A18-mRNA复合物的免疫沉淀(IP)以及hnRNP A18和TRX转录本在核糖体组分上的共定位证实了hnRNP A18与TRX转录本在细胞中的相互作用。此外,hnRNP A18的下调与TRX蛋白水平的显着降低有关。此外,hnRNP A18增加TRX翻译并与真核起始因子4G(eIF4G)相互作用,后者是一般翻译机制的组成部分。此外,由缺氧诱导的GSK3beta引起的hnRNP A18磷酸化增加了体外和在RKO细胞中响应紫外线辐射的hnRNP A18 RNA结合活性。这些数据可能通过在eIF4G上桥接TRX 3'-和5'-UTR的亲吻环模型来支持hnRNP A18在TRX转录后表达中的调控作用。

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