Mukherjee Sumit, Mukherjee Sunanda Biswas, Frenkel-Morgenstern Milana
Cancer Genomics and BioComputing of Complex Diseases Lab, Azrieli Faculty of Medicine, Bar-Ilan University, Safed, Israel.
Department of Computer Science, Ben-Gurion University, Beer-Sheva, Israel.
Wiley Interdiscip Rev RNA. 2023 Sep-Oct;14(5):e1777. doi: 10.1002/wrna.1777. Epub 2023 Jan 12.
Fusions of two genes can lead to the generation of chimeric RNAs, which may have a distinct functional role from their original molecules. Chimeric RNAs could encode novel functional proteins or serve as novel long noncoding RNAs (lncRNAs). The appearance of chimeric RNAs in a cell could help to generate new functionality and phenotypic diversity that might facilitate this cell to survive against new environmental stress. Several recent studies have demonstrated the functional roles of various chimeric RNAs in cancer progression and are considered as biomarkers for cancer diagnosis and sometimes even drug targets. Further, the growing evidence demonstrated the potential functional association of chimeric RNAs with cancer heterogeneity and drug resistance cancer evolution. Recent studies highlighted that chimeric RNAs also have functional potentiality in normal physiological processes. Several functionally potential chimeric RNAs were discovered in human cancer and normal cells in the last two decades. This could indicate that chimeric RNAs are the hidden layer of the human transcriptome that should be explored from the functional insights to better understand the functional evolution of the genome and disease development that could facilitate clinical practice improvements. This review summarizes the current knowledge of chimeric RNAs and highlights their functional, regulatory, and evolutionary impact on different cancers and normal physiological processes. Further, we will discuss the potential functional roles of a recently discovered novel class of chimeric RNAs named sense-antisense/cross-strand chimeric RNAs generated by the fusion of the bi-directional transcripts of the same gene. This article is categorized under: Regulatory RNAs/RNAi/Riboswitches > Regulatory RNAs.
两个基因的融合可导致嵌合RNA的产生,其可能具有与原始分子不同的功能作用。嵌合RNA可编码新型功能蛋白或作为新型长链非编码RNA(lncRNA)。细胞中嵌合RNA的出现有助于产生新的功能和表型多样性,这可能有助于该细胞在新的环境压力下存活。最近的几项研究已经证明了各种嵌合RNA在癌症进展中的功能作用,并被视为癌症诊断的生物标志物,有时甚至是药物靶点。此外,越来越多的证据表明嵌合RNA与癌症异质性和耐药性癌症进化之间存在潜在的功能关联。最近的研究强调,嵌合RNA在正常生理过程中也具有功能潜力。在过去二十年中,在人类癌症和正常细胞中发现了几种具有功能潜力的嵌合RNA。这可能表明嵌合RNA是人类转录组的隐藏层,应该从功能角度进行探索,以更好地理解基因组的功能进化和疾病发展,从而促进临床实践的改进。本综述总结了目前关于嵌合RNA的知识,并强调了它们对不同癌症和正常生理过程的功能、调控和进化影响。此外,我们将讨论最近发现的一类新型嵌合RNA的潜在功能作用,这类嵌合RNA名为正义-反义/跨链嵌合RNA,由同一基因的双向转录本融合产生。本文分类如下:调控RNA/RNA干扰/核糖开关>调控RNA。