Lester & Sue Smith Breast Center, Department of Molecular & Human Genetics, Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX 77030, USA.
Nucleic Acids Res. 2019 Apr 23;47(7):3667-3679. doi: 10.1093/nar/gkz036.
RNA secondary structures have been increasingly recognized to play an important regulatory role in post-transcriptional gene regulation. We recently showed that RNA G-quadruplexes, which serve as cis-elements to recruit splicing factors, play a critical role in regulating alternative splicing during the epithelial-mesenchymal transition. In this study, we performed a high-throughput screen using a dual-color splicing reporter to identify chemical compounds capable of regulating G-quadruplex-dependent alternative splicing. We identify emetine and its analog cephaeline as small molecules that disrupt RNA G-quadruplexes, resulting in inhibition of G-quadruplex-dependent alternative splicing. Transcriptome analysis reveals that emetine globally regulates alternative splicing, including splicing of variable exons that contain splice site-proximal G-quadruplexes. Our data suggest the use of emetine and cephaeline for investigating mechanisms of G-quadruplex-associated alternative splicing.
RNA 二级结构已逐渐被认为在转录后基因调控中发挥重要的调控作用。我们最近表明,作为剪接因子募集顺式元件的 RNA G-四链体在上皮-间充质转化过程中调节可变剪接中起着关键作用。在这项研究中,我们使用双色剪接报告基因进行了高通量筛选,以鉴定能够调节 G-四链体依赖的可变剪接的化学化合物。我们发现依米丁及其类似物石蒜碱是破坏 RNA G-四链体的小分子,导致 G-四链体依赖的可变剪接受到抑制。转录组分析表明,依米丁全局调控可变剪接,包括可变外显子的剪接,这些外显子含有剪接位点近端的 G-四链体。我们的数据表明,依米丁和石蒜碱可用于研究与 G-四链体相关的可变剪接的机制。