Institut de Biologie de l'Ecole Normale Supérieure, Section de Génomique Fonctionnelle, Paris, France.
Nat Struct Mol Biol. 2012 Nov;19(11):1124-31. doi: 10.1038/nsmb.2420. Epub 2012 Oct 21.
The exon junction complex (EJC) is a central effector of the fate of mRNAs, linking nuclear processing to mRNA transport, translation and surveillance. However, little is known about its transcriptome-wide targets. We used cross-linking and immunoprecipitation methods coupled to high-throughput sequencing (CLIP-seq) in human cells to identify the binding sites of the DEAD-box helicase eIF4AIII, an EJC core component. CLIP reads form peaks that are located mainly in spliced mRNAs. Most expressed exons harbor peaks either in the canonical EJC region, located ~24 nucleotides upstream of exonic junctions, or in other noncanonical regions. Notably, both of these types of peaks are preferentially associated with unstructured and purine-rich sequences containing the motif GAAGA, which is a potential binding site for EJC-associated factors. Therefore, EJC positions vary spatially and quantitatively between exons. This transcriptome-wide mapping of human eIF4AIII reveals unanticipated aspects of the EJC and broadens its potential impact on post-transcriptional regulation.
外显子结合复合体(EJC)是决定 mRNA 命运的核心效应因子,将核处理与 mRNA 运输、翻译和监测联系起来。然而,人们对其转录组范围的靶标知之甚少。我们使用交联和免疫沉淀方法结合高通量测序(CLIP-seq)在人类细胞中鉴定 DEAD 盒解旋酶 eIF4AIII 的结合位点,eIF4AIII 是 EJC 的核心成分之一。CLIP 读取形成的峰主要位于剪接的 mRNA 中。大多数表达的外显子在典型的 EJC 区域(位于外显子交界处上游约 24 个核苷酸处)或其他非典型区域都有峰。值得注意的是,这两种类型的峰都优先与含有 GAAGA 基序的无规则和富含嘌呤的序列相关,GAAGA 基序是 EJC 相关因子的潜在结合位点。因此,EJC 在不同外显子之间在空间和数量上的位置都有所不同。对人类 eIF4AIII 的这种全转录组图谱揭示了 EJC 的意外方面,并扩大了其对转录后调控的潜在影响。