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首页> 外文期刊>Genome Medicine >Transcriptome-wide profiles of circular RNA and RNA-binding protein interactions reveal effects on circular RNA biogenesis and cancer pathway expression
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Transcriptome-wide profiles of circular RNA and RNA-binding protein interactions reveal effects on circular RNA biogenesis and cancer pathway expression

机译:转录的圆形RNA和RNA结合蛋白相互作用的型曲线显示对圆形RNA生物发生和癌症途径表达的影响

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Circular RNAs (circRNAs) are stable, often highly expressed RNA transcripts with potential to modulate other regulatory RNAs. A few circRNAs have been shown to bind RNA-binding proteins (RBPs); however, little is known about the prevalence and distribution of these interactions in different biological contexts. We conduct an extensive screen of circRNA-RBP interactions in the ENCODE cell lines HepG2 and K562. We profile circRNAs in deep-sequenced total RNA samples and analyze circRNA-RBP interactions using a large set of eCLIP data with binding sites of 150 RBPs. We validate interactions for select circRNAs and RBPs by performing RNA immunoprecipitation and functionally characterize our most interesting candidates by conducting knockdown studies followed by RNA-Seq. We generate a comprehensive catalog of circRNA-RBP interactions in HepG2 and K562 cells. We show that KHSRP binding sites are enriched in flanking introns of circRNAs and that KHSRP depletion affects circRNA biogenesis. We identify circRNAs that are highly covered by RBP binding sites and experimentally validate individual circRNA-RBP interactions. We show that circCDYL, a highly expressed circRNA with clinical and functional implications in bladder cancer, is almost completely covered with GRWD1 binding sites in HepG2 cells, and that circCDYL depletion counteracts the effect of GRWD1 depletion. Furthermore, we confirm interactions between circCDYL and RBPs in bladder cancer cells and demonstrate that circCDYL depletion affects hallmarks of cancer and perturbs the expression of key cancer genes, e.g., TP53. Finally, we show that elevated levels of circCDYL are associated with overall survival of bladder cancer patients. Our study demonstrates transcriptome-wide and cell-type-specific circRNA-RBP interactions that could play important regulatory roles in tumorigenesis.
机译:圆形RNA(CircRNA)是稳定的,通常表达RNA转录物具有调节其他调节RNA的潜力。已经显示出几个CircrNA结合RNA结合蛋白(RBPS);然而,关于不同生物背景下这些相互作用的患病率和分布很少。我们在编码细胞系HepG2和K562中进行广泛的CircrNA-RBP相互作用筛选。我们在深测序的总RNA样本中谱谱中CircRNA并使用大量Eclip数据分析Circrna-RBP相互作用,其中包含150个Rbps的绑定站点。我们通过执行RNA免疫沉淀,通过进行RNA-SEQ的敲低度研究来验证选择Circrnas和RBP的相互作用。我们在HepG2和K562细胞中产生了综合的Circrna-RBP相互作用目录。我们表明KHSRP结合位点富含侧翼内含子,并且KHSRP耗尽会影响Circrna生物生成。我们识别RBP绑定站点高度覆盖的Circrnas,并通过实验验证单个CircrNA-RBP互动。我们表明,氨基甲基是一种高表达的膀胱癌,膀胱癌中的功能影响,几乎完全被HepG2细胞的GRWD1结合位点覆盖,并且呋喃酰耗尽抵消GRWD1耗尽的影响。此外,我们确认膀胱癌细胞中呋喃基和Rbps之间的相互作用,并证明呋喃枯草影响癌症的标志和扰乱关键癌症基因的表达,例如TP53。最后,我们表明蓖麻含量升高与膀胱癌患者的整体存活率相关。我们的研究表明转录组 - 宽和细胞类型特异性CircrNA-RBP相互作用,其可能在肿瘤发生中发挥重要的调节作用。
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