PATH-13. A novel C19orf47-AKT2 chimeric RNA generated by cis-splicing of adjacent genes is associated with glioblastoma prognosis
作者:Zihan Wang, Bowen Ni, Kezhi Wu, Qi Zhang, Jinglin Guo, Runwei Yang, Ziyu Wang, Guozhong Yi, Guanglong Huang, Minyi He, Yimin Xu, Yawei Liu · 发表于:Neuro-Oncology · 年份:2025 · DOI:10.1093/neuonc/noaf201.0965 · 研究领域:Protein Degradation and Inhibitors、Microtubule and mitosis dynamics、RNA Research and Splicing
Abstract Gliomas are the most prevalent and aggressive primary brain tumors in adults, characterized by rapid progression, therapeutic resistance, and a dismal prognosis. The discovery of targetable fusion genes in cancer has spurred interest in detecting chimeric RNAs for precision treatments. This study identified and validated a novel C19orf47-AKT2 fusion in glioma, including an out-of-frame C19orf47e9-AKT2e2 and an in-frame C19orf47e9-AKT2e3 variant, via RNA sequencing and Sanger sequencing. These chimeric RNAs were undetectable in all five non-tumorous brain tissue samples from epilepsy patients but were present in a significant proportion of glioma samples, indicating tumor specificity. Specifically, they were detected in 88.9% (144/162) of glioma core tissues, higher than that in peritumoral tissues (65.2%, 30/46, p<0.001). Quantitative analysis revealed no significant expression difference between these variants in peritumoral tissues. However, in tumor core tissues, the C19orf47e9-AKT2e2 variant was significantly more abundant (p<0.001). High expression of this variant was associated with poor prognosis in glioblastoma patients (p<0.05). Further analysis revealed that C19orf47-AKT2 chimeras arise from cis-splicing of adjacent genes, involving intergenic pre-mRNA splicing without DNA rearrangement. The in-frame variant is predicted to encode a fusion protein containing domains from both parent genes, and this coding potential was validated by tran...