首页> 外文期刊>The Journal of biological chemistry >Functional Significance for a Heterogenous Ribonucleoprotein A18 Signature RNA Motif in the 3′-Untranslated Region of Ataxia Telangiectasia Mutated and Rad3-related (ATR) Transcript
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Functional Significance for a Heterogenous Ribonucleoprotein A18 Signature RNA Motif in the 3′-Untranslated Region of Ataxia Telangiectasia Mutated and Rad3-related (ATR) Transcript

机译:在Ataxia Telanciectasia突变和RAD3相关(ATR)转录物中的3'-未旋转的区域中核糖核蛋白A18签名RNA基序的功能意义

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The predominantly nuclear heterogenous ribonucleoprotein A18 (hnRNP A18) translocates to the cytosol in response to cellular stress and increases translation by specifically binding to the 3′-untranslated region (UTR) of several mRNA transcripts and the eukaryotic initiation factor 4G. Here, we identified a 51-nucleotide motif that is present 11.49 times more often in the 3′-UTR of hnRNP A18 mRNA targets than in the UniGene data base. This motif was identified by computational analysis of primary sequences and secondary structures of hnRNP A18 mRNA targets against the unaligned sequences. Band shift analyses indicate that the motif is sufficient to confer binding to hnRNP A18. A search of the entire UniGene data base indicates that the hnRNP A18 motif is also present in the 3′-UTR of the ataxia telangiectasia mutated and Rad3-related (ATR) mRNA. Validation of the predicted hnRNP A18 motif is provided by amplification of endogenous ATR transcript on polysomal fractions immunoprecipitated with hnRNP A18. Moreover, overexpression of hnRNP A18 results in increased ATR protein levels and increased phosphorylation of Chk1, a preferred ATR substrate, in response to UV radiation. In addition, our data indicate that inhibition of casein kinase II or GSK3β significantly reduced hnRNP A18 cytosolic translocation in response to UV radiation. To our knowledge, this constitutes the first demonstration of a post-transcriptional regulatory mechanism for ATR activity. hnRNP A18 could thus become a new target to trigger ATR activity as back-up stress response mechanisms to functionally compensate for absent or defective responders.
机译:主要是核心核糖核蛋白A18(HNRNP A18)响应于细胞应激而转化为胞质溶胶,通过特异性结合几种mRNA转录物和真核引发因子4g来增加平移。在这里,我们鉴定了51-核苷酸基序,其在HNRNP A18 mRNA靶标中的3'-UTR中常见于HNRNP A18 mRNA靶的3.49倍,而不是在Unigene数据群中。通过对未对准序列的初级序列和HNRNP A18 mRNA靶标的二次结构的计算分析来鉴定该基序。频带移位分析表明图案足以赋予HNRNP A18的结合。搜索整个UNIGENE数据库表明HNRNP A18基序也存在于Ataxia Telanciectasia突变和RAD3相关(ATR)mRNA的3'-UTR中。通过扩增具有HNRNP A18免疫沉淀的多源ATR转录物,提供预测的HNRNP A18基序的验证。此外,HNRNP A18的过度表达导致ATR蛋白水平的增加和CHK1的磷酸化增加,优选的ATR底物,响应于UV辐射。此外,我们的数据表明,抑制酪蛋白激酶II或GSK3β响应于紫外辐射而显着降低了HNRNP A18胞质易位。为我们的知识,这构成了ATR活动后转录后监管机制的第一次演示。因此,HNRNP A18因此可以成为触发ATR活动的新目标,因为备用应力响应机制以在功能上补偿缺席或缺陷的响应者。

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