UCIBIO, Departamento de Ciências da Vida, Faculdade de Ciências e Tecnologia, Universidade NOVA de Lisboa, Caparica, Portugal.
Methods Mol Biol. 2021;2324:85-102. doi: 10.1007/978-1-0716-1503-4_6.
Transcription termination is a critical stage for the production of legitimate mRNAs, and consequently functional proteins. However, the transcription machinery can ignore the stop signs and continue elongating beyond gene boundaries, invading downstream neighboring genes. Such phenomenon, designated transcription readthrough, can trigger the expression of pseudogenes usually silenced or lacking the proper regulatory signals. Due to the sequence similarity to parental genes, readthrough transcribed pseudogenes can regulate relevant protein-coding genes and impact biological functions. Here, we describe a computational pipeline that employs already existent bioinformatic tools to detect readthrough transcribed pseudogenes from expression profiles. We also unveil that combining strand-specific transcriptome data and epigenetic profiles can enhance and corroborate the results. By applying such approach to renal cancer biopsies, we show that pseudogenes can be readthrough transcribed as part of unspliced transcripts or processed RNA chimeras. Overall, our pipeline allows us to scrutinize transcriptome profiles to detect a diversity of readthrough events leading to expression of pseudogenes.
转录终止是产生合法 mRNA 和相应功能蛋白的关键阶段。然而,转录机制可以忽略终止信号,继续延伸超出基因边界,侵入下游邻近基因。这种现象被称为转录通读,可以触发通常被沉默或缺乏适当调控信号的假基因的表达。由于与亲本基因具有序列相似性,通读转录的假基因可以调节相关的蛋白编码基因并影响生物功能。在这里,我们描述了一个计算流程,该流程利用现有的生物信息学工具从表达谱中检测转录通读的假基因。我们还揭示了结合有向转录组数据和表观遗传谱可以增强和证实结果。通过将这种方法应用于肾肿瘤活检,我们表明假基因可以作为未剪接转录本或加工 RNA 嵌合体的一部分进行转录通读。总的来说,我们的流程允许我们仔细检查转录组谱,以检测导致假基因表达的多种转录通读事件。