Department of Obstetrics and Gynecology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Center for Genome Analysis, ABLife BioBigData Institute, Wuhan, China.
Oncol Res. 2023 Jul 21;31(5):769-785. doi: 10.32604/or.2023.030166. eCollection 2023.
Late-stage ovarian cancer (OC) has a poor prognosis and a high metastasis rate, but the underlying molecular mechanism is unclear. RNA binding proteins (RBPs) play important roles in posttranscriptional regulation in the contexts of neoplasia and tumor metastasis. In this study, we explored the molecular functions of a canonical RBP, Transformer 2β homolog (TRA2B), in cancer cells. TRA2B knockdown in HeLa cells and subsequent whole-transcriptome RNA sequencing (RNA-seq) analysis revealed the TRA2B-regulated alternative splicing (AS) profile. We disrupted TRA2B expression in epithelial OC cells and performed a series of experiments to confirm the resulting effects on OC cell proliferation, apoptosis and invasion. TRA2B-regulated AS was tightly associated with the mitotic cell cycle, apoptosis and several cancer pathways. Moreover, the expression of hundreds of genes was regulated by TRA2B, and these genes were enriched in the functions of cell proliferation, cell adhesion and angiogenesis, which are related to the malignant phenotype of OC. By integrating the alternatively spliced and differentially expressed genes, we found that AS events and gene expression were regulated independently. We then explored and validated the oncogenic functions of TRA2B by knocking down its expression in OC cells. The high TRA2B expression was associated with poor prognosis in patients with OC. In ovarian tissue, TRA2B expression showed a gradual increasing trend with increasing malignancy. We demonstrated the important roles of TRA2B in ovarian neoplasia and aggressive OC behaviors and identified the underlying molecular mechanisms, facilitating the targeted treatment of OC.
晚期卵巢癌(OC)预后不良,转移率高,但潜在的分子机制尚不清楚。RNA 结合蛋白(RBPs)在肿瘤发生和肿瘤转移的背景下在转录后调控中发挥重要作用。在这项研究中,我们探索了一种规范的 RBP,Transformer 2β 同源物(TRA2B)在癌细胞中的分子功能。HeLa 细胞中的 TRA2B 敲低以及随后的全转录组 RNA 测序(RNA-seq)分析揭示了 TRA2B 调节的可变剪接(AS)谱。我们破坏上皮性 OC 细胞中的 TRA2B 表达,并进行了一系列实验来确认对 OC 细胞增殖、凋亡和侵袭的影响。TRA2B 调节的 AS 与有丝分裂细胞周期、凋亡和几种癌症途径密切相关。此外,数百个基因的表达受 TRA2B 调节,这些基因富集在细胞增殖、细胞黏附和血管生成等功能中,这些功能与 OC 的恶性表型有关。通过整合可变剪接和差异表达基因,我们发现 AS 事件和基因表达是独立调节的。然后,我们通过在 OC 细胞中敲低其表达来探索和验证 TRA2B 的致癌功能。高 TRA2B 表达与 OC 患者的预后不良相关。在卵巢组织中,TRA2B 表达随着恶性程度的增加呈现逐渐增加的趋势。我们证明了 TRA2B 在卵巢肿瘤和侵袭性 OC 行为中的重要作用,并确定了潜在的分子机制,为 OC 的靶向治疗提供了依据。