首页> 外文期刊>Nucleic Acids Research >ARED: human AU-rich element-containing mRNA database reveals an unexpectedly diverse functional repertoire of encoded proteins.
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ARED: human AU-rich element-containing mRNA database reveals an unexpectedly diverse functional repertoire of encoded proteins.

机译:ARED:富含AU元素的人类mRNA数据库揭示了编码蛋白的意想不到的多样化功能。

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The adenylate uridylate-rich elements (AREs) mediate the rapid turnover of mRNAs encoding proteins that regulate cellular growth and body response to exogenous agents such as microbes, inflammatory and environmental stimuli. However, the full repertoire of ARE-containing mRNAs is unknown. Here, we explore the distribution of AREs in human mRNA sequences. Computational derivation of a 13-bp ARE pattern was performed using multiple expectation maximization for motif elicitations (MEME) and consensus analyses. This pattern was statistically validated for the specificity towards the 3'-untranslated region and not coding region. The computationally derived ARE pattern is the basis of a database which contains non-redundant full-length ARE-mRNAs. The ARE-mRNA database (ARED; http://rc.kfshrc.edu.sa/ared) reveals that ARE-mRNAs encode a wide repertoire of functionally diverse proteins that belong to different biological processes and are important in several disease states. Cluster analysis was performed using the ARE sequences to demonstrate potential relationships between the type and number of ARE motifs, and the functional characteristics of the proteins.
机译:富含腺苷酸尿苷酸的元件(ARE)介导编码蛋白质的mRNA的快速更新,这些蛋白质调节细胞的生长和机体对诸如微生物,炎症和环境刺激等外源性物质的反应。但是,尚不清楚包含ARE的mRNA的完整库。在这里,我们探讨了人类mRNA序列中ARE的分布。使用基序诱导(MEME)和共识分析的多重期望最大化执行13 bp ARE模式的计算推导。从统计学上验证了该模式对3'-非翻译区而非编码区的特异性。计算得出的ARE模式是包含非冗余全长ARE-mRNA的数据库的基础。 ARE-mRNA数据库(ARED; http://rc.kfshrc.edu.sa/ared)显示,ARE-mRNA编码多种功能多样的蛋白,这些蛋白属于不同的生物学过程,在某些疾病状态中很重要。使用ARE序列进行了聚类分析,以证明ARE基序的类型和数量与蛋白质的功能特征之间的潜在关系。

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