Department of Gynecology, Women's Hospital of Nanjing Medical University (Nanjing Women and Children's Healthcare Hospital), 123 Tianfei Xiang, Mochou Road, Nanjing, 210004, China.
School of Pharmacy, Queen's University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast, BT9 7BL, UK.
Biol Direct. 2024 Aug 21;19(1):69. doi: 10.1186/s13062-024-00520-y.
A substantive body of evidence has demonstrated the significant roles of circular RNA (circRNA) in cancer. However, the contribution of dysregulated circRNAs to ovarian cancer (OC) remains elusive. We aim to elucidate the critical roles and mechanisms of hsa_circ_0020093, which was demonstrated to be downregulated in OC tissues in our previous study. In this study, we confirmed the decreased expression of hsa_circ_0020093 in OC tissues and cell lines and demonstrated the negative correlation between its expression and FIGO stage, abdominal implantation and CA125 level of OC patients. Through gain and loss of function studies, we confirmed the inhibitory role of hsa_circ_0020093 in ovarian tumor growth in vitro and in vivo. Mechanistically, based on the peri-nuclear accumulation of hsa_circ_0020093, we discovered the interaction between hsa_circ_0020093 and the mitochondrial protein LRPPRC by RNA pull-down, mass spectrometry, RNA Binding Protein Immunoprecipitation. As a result, qRT-PCR and transmission electron microscopy results showed that the mitochondria mRNA expression and mitochondria abundance were decreased upon hsa_circ_0020093-overexpression. Meanwhile, we also unearthed the hsa_circ_0020093/miR-107/LATS2 axis in OC according to RNA-sequencing, RIP and luciferase reporter assay data. Furthermore, LRPPRC and LATS2 are both reported as the upstream regulators of YAP, our study also studied the crosstalk between hsa_circ_0020093, LRPPRC and miR-107/LATS2, and unearthed the up-regulation of phosphorylated YAP in hsa_circ_0020093-overexpressing OC cells and xenograft tumors. Collectively, our study indicated the novel mechanism of hsa_circ_0020093 in suppressing OC progression through both hsa_circ_0020093/LRPPRC and hsa_circ_0020093/miR-107/LATS2 axes, providing a potential therapeutic target for OC patients.
大量证据表明环状 RNA(circRNA)在癌症中具有重要作用。然而,失调的 circRNA 对卵巢癌(OC)的贡献仍不清楚。我们旨在阐明 hsa_circ_0020093 的关键作用和机制,我们之前的研究表明 hsa_circ_0020093 在 OC 组织中下调。在这项研究中,我们证实了 hsa_circ_0020093 在 OC 组织和细胞系中的表达降低,并证明了其表达与 OC 患者的 FIGO 分期、腹部种植和 CA125 水平之间的负相关。通过增益和功能丧失研究,我们证实了 hsa_circ_0020093 在体外和体内抑制卵巢肿瘤生长的作用。从机制上讲,基于 hsa_circ_0020093 的核周积累,我们通过 RNA 下拉、质谱、RNA 结合蛋白免疫沉淀发现了 hsa_circ_0020093 与线粒体蛋白 LRPPRC 之间的相互作用。结果表明,qRT-PCR 和透射电镜结果显示,hsa_circ_0020093 过表达后线粒体 mRNA 表达和线粒体丰度降低。同时,根据 RNA-seq、RIP 和荧光素酶报告基因检测数据,我们还在 OC 中发现了 hsa_circ_0020093/miR-107/LATS2 轴。此外,LRPPRC 和 LATS2 均被报道为 YAP 的上游调节剂,我们的研究还研究了 hsa_circ_0020093、LRPPRC 和 miR-107/LATS2 之间的相互作用,并发现 hsa_circ_0020093 过表达的 OC 细胞和异种移植肿瘤中磷酸化 YAP 的上调。总之,我们的研究表明 hsa_circ_0020093 通过 hsa_circ_0020093/LRPPRC 和 hsa_circ_0020093/miR-107/LATS2 轴抑制 OC 进展的新机制,为 OC 患者提供了潜在的治疗靶点。