Tumor Biology Research Program, Basic Research Unit, Research Department, Children's Cancer Hospital Egypt-57357, Cairo 11441, Egypt.
Genes (Basel). 2020 Sep 22;11(9):1108. doi: 10.3390/genes11091108.
Embryonal tumor with multilayered rosettes (ETMR) is an aggressive and rare pediatric embryonal brain tumor. Amplification of C19MC microRNA cluster and expression of are distinctive features of ETMR. Despite the increasing efforts to decipher ETMR, the biology remains poorly understood. To date, the role of aberrant alternative splicing in ETMR has not been thoroughly investigated. In the current study, a comprehensive analysis was performed on published unprocessed RNA-seq reads of tissue-matched ETMR and fetal controls datasets. Gene expression was quantified in samples using Kallisto/sleuth pipeline. For the alternative splicing analysis, STAR, SplAdder and rMATS were used. Functional enrichment analysis was subsequently performed using Metascape. The expression analysis identified a total of 3622 differentially expressed genes (DEGs) between ETMR and fetal controls while 1627 genes showed differential alternative splicing patterns. Interestingly, genes with significant alternative splicing events in ETMR were identified to be involved in signaling pathways such as ErbB, mTOR and MAPK pathways as well as ubiquitin-mediated proteolysis, cell cycle and autophagy. Moreover, up-regulated DEGs with alternative splicing events were involved in important biological processes including nuclear transport, regulation of cell cycle and regulation of Wnt signaling pathway. These findings highlight the role of aberrant alternative splicing in shaping the ETMR tumor landscape, and the identified pathways constitute potential therapeutic targets.
胚胎性肿瘤伴多层菊形团(ETMR)是一种侵袭性且罕见的儿童胚胎性脑肿瘤。C19MC 微 RNA 簇的扩增和 的表达是 ETMR 的独特特征。尽管人们越来越努力地破译 ETMR,但对其生物学特性仍了解甚少。迄今为止,异常可变剪接在 ETMR 中的作用尚未得到彻底研究。在本研究中,对组织匹配的 ETMR 和胎儿对照数据集的已发表的未处理 RNA-seq 读数进行了全面分析。使用 Kallisto/sleuth 管道在样本中定量基因表达。对于可变剪接分析,使用 STAR、SplAdder 和 rMATS。随后使用 Metascape 进行功能富集分析。表达分析在 ETMR 和胎儿对照之间总共鉴定出 3622 个差异表达基因(DEGs),而 1627 个基因显示出差异可变剪接模式。有趣的是,在 ETMR 中具有显著可变剪接事件的基因被鉴定为参与信号通路,如 ErbB、mTOR 和 MAPK 通路以及泛素介导的蛋白水解、细胞周期和自噬。此外,具有可变剪接事件的上调 DEGs 参与了重要的生物学过程,包括核转运、细胞周期调控和 Wnt 信号通路调控。这些发现强调了异常可变剪接在塑造 ETMR 肿瘤景观中的作用,并且鉴定出的途径构成了潜在的治疗靶点。