Laboratoire de Biologie et Modelisation de la Cellule, Ecole Normale Superieure de Lyon, CNRS, UMR 5239, Inserm, U1293, Universite Claude Bernard Lyon 1, 46 allee d'Italie, F-69364 Lyon, France.
CECS/AFM, I-STEM, 28 rue Henri Desbruères, F-91100, Corbeil-Essonnes, France.
Nucleic Acids Res. 2022 Sep 9;50(16):9226-9246. doi: 10.1093/nar/gkac717.
DDX5 and DDX17 are DEAD-box RNA helicase paralogs which regulate several aspects of gene expression, especially transcription and splicing, through incompletely understood mechanisms. A transcriptome analysis of DDX5/DDX17-depleted human cells confirmed the large impact of these RNA helicases on splicing and revealed a widespread deregulation of 3' end processing. In silico analyses and experiments in cultured cells showed the binding and functional contribution of the genome organizing factor CTCF to chromatin sites at or near a subset of DDX5/DDX17-dependent exons that are characterized by a high GC content and a high density of RNA Polymerase II. We propose the existence of an RNA helicase-dependent relationship between CTCF and the dynamics of transcription across DNA and/or RNA structured regions, that contributes to the processing of internal and terminal exons. Moreover, local DDX5/DDX17-dependent chromatin loops spatially connect RNA helicase-regulated exons with their cognate promoter, and we provide the first direct evidence that de novo gene looping modifies alternative splicing and polyadenylation. Overall our findings uncover the impact of DDX5/DDX17-dependent chromatin folding on pre-messenger RNA processing.
DDX5 和 DDX17 是 DEAD-box RNA 解旋酶的旁系同源物,它们通过尚未完全了解的机制调节基因表达的多个方面,特别是转录和剪接。DDX5/DDX17 耗尽的人类细胞的转录组分析证实了这些 RNA 解旋酶对剪接的巨大影响,并揭示了 3' 端加工的广泛失调。在计算机上进行分析和在培养细胞中的实验表明,基因组组织因子 CTCF 与染色质结合,并在一组依赖 DDX5/DDX17 的外显子上发挥功能,这些外显子的特征是 GC 含量高和 RNA 聚合酶 II 密度高。我们提出了在 DNA 和/或 RNA 结构区域转录的 CTCF 和 RNA 解旋酶之间存在依赖 RNA 解旋酶的关系,这有助于内部和末端外显子的加工。此外,局部依赖 DDX5/DDX17 的染色质环在空间上将 RNA 解旋酶调控的外显子与其同源启动子连接起来,我们提供了第一个直接证据表明新基因环可以改变可变剪接和多聚腺苷酸化。总的来说,我们的研究结果揭示了 DDX5/DDX17 依赖性染色质折叠对前信使 RNA 处理的影响。