School of Basic Medical Sciences, Academy of Medical Sciences, Zhengzhou University, Zhengzhou 450001, Henan Province, China.
Department of Biochemistry and Molecular Genetics, School of Medicine, University of Virginia, Charlottesville, VA 22908, USA.
Genes (Basel). 2021 Mar 24;12(4):466. doi: 10.3390/genes12040466.
Gene fusions and their products (RNA and protein) have been traditionally recognized as unique features of cancer cells and are used as ideal biomarkers and drug targets for multiple cancer types. However, recent studies have demonstrated that chimeric RNAs generated by intergenic alternative splicing can also be found in normal cells and tissues. In this study, we aim to identify chimeric RNAs in different non-neoplastic cell lines and investigate the landscape and expression of these novel candidate chimeric RNAs. To do so, we used HEK-293T, HUVEC, and LO2 cell lines as models, performed paired-end RNA sequencing, and conducted analyses for chimeric RNA profiles. Several filtering criteria were applied, and the landscape of chimeric RNAs was characterized at multiple levels and from various angles. Further, we experimentally validated 17 chimeric RNAs from different classifications. Finally, we examined a number of validated chimeric RNAs in different cancer and non-cancer cells, including blood from healthy donors, and demonstrated their ubiquitous expression pattern.
基因融合及其产物(RNA 和蛋白质)一直被认为是癌细胞的独特特征,被用作多种癌症类型的理想生物标志物和药物靶点。然而,最近的研究表明,由基因间选择性剪接产生的嵌合 RNA 也可以在正常细胞和组织中发现。在本研究中,我们旨在鉴定不同非肿瘤细胞系中的嵌合 RNA,并研究这些新型候选嵌合 RNA 的结构和表达情况。为此,我们使用 HEK-293T、HUVEC 和 LO2 细胞系作为模型,进行了配对末端 RNA 测序,并进行了嵌合 RNA 谱分析。应用了几种过滤标准,并从多个角度和多个层次描述了嵌合 RNA 的结构。此外,我们从不同分类中实验验证了 17 个嵌合 RNA。最后,我们在不同的癌症和非癌症细胞中检测了一些经过验证的嵌合 RNA,包括来自健康供体的血液,并证明了它们普遍的表达模式。