Grupo de Inmunovirologia, Universidad de Antioquia, Calle 67 Número 53-108, Medellin, Antioquia, Colombia.
Mol Genet Genomics. 2012 Dec;287(11-12):867-79. doi: 10.1007/s00438-012-0722-8. Epub 2012 Oct 4.
The HuR protein regulates the expression of thousands of cellular transcripts by modulating mRNA splicing, trafficking, translation, and stability. Although it serves as a model of RNA-protein interactions, many features of HuR's interactions with RNAs remain unknown. In this report, we deployed the cryogenic RNA immunoprecipitation technique to analyze HuR-interacting RNAs with the Affymetrix all-exon microarray platform. We revealed several thousand novel HuR-interacting RNAs, including hundreds of non-coding RNAs such as natural antisense transcripts from stress responsive loci. To gain insight into the mechanisms of specificity and sensitivity of HuR's interaction with its target RNAs, we searched HuR-interacting RNAs for composite patterns of primary sequence and secondary structure. We provide evidence that secondary structures of 66-75 nucleotides enhance HuR's recognition of its specific RNA targets composed of short primary sequence patterns. We validated thousands of these RNAs by analysis of overlap with recently published findings, including HuR's interaction with RNAs in the pathways of RNA splicing and stability. Finally, we observed a striking enrichment for members of ubiquitin ligase pathways among the HuR-interacting mRNAs, suggesting a new role for HuR in the regulation of protein degradation to mirror its known function in protein translation.
HuR 蛋白通过调节 mRNA 的剪接、运输、翻译和稳定性来调控数千个细胞转录本的表达。尽管它是 RNA-蛋白相互作用的模型,但 HuR 与 RNA 相互作用的许多特征仍然未知。在本报告中,我们使用低温 RNA 免疫沉淀技术,利用 Affymetrix 全外显子微阵列平台分析 HuR 相互作用的 RNA。我们揭示了数千个新的 HuR 相互作用的 RNA,包括数百个非编码 RNA,如应激反应基因座的天然反义转录本。为了深入了解 HuR 与其靶 RNA 相互作用的特异性和敏感性的机制,我们在 HuR 相互作用的 RNA 中搜索了一级序列和二级结构的组合模式。我们提供的证据表明,66-75 个核苷酸的二级结构增强了 HuR 对其由短的一级序列模式组成的特定 RNA 靶标的识别。我们通过分析与最近发表的研究结果的重叠来验证了数千个这些 RNA,包括 HuR 与 RNA 剪接和稳定性途径中的 RNA 的相互作用。最后,我们观察到 HuR 相互作用的 mRNAs 中泛素连接酶途径的成员明显富集,这表明 HuR 在蛋白降解的调节中具有新的作用,以反映其在蛋白翻译中的已知功能。