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hsa_circ_0020093 suppresses ovarian cancer progression by modulating LRPPRC activity and miR-107/LATS2 signaling
Yu Sun1,2, Xiyi Chen1, Yaqian Shi1
1Department of Gynecology, Women's Hospital of Nanjing Medical University (Nanjing Women and Children's Healthcare Hospital), 123 Tianfei Xiang, Mochou Road, Nanjing, 210004, China.
Abstract:
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.
Insights
Circular RNA hsa_circ_0020093 suppresses ovarian cancer (OC) progression by regulating mitochondrial function and the miR-107/LATS2 axis. This study reveals novel mechanisms and a potential therapeutic target for OC.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Circular RNAs (circRNAs) play roles in cancer, but their specific contribution to ovarian cancer (OC) is not fully understood.
- hsa_circ_0020093 was previously found to be downregulated in OC tissues.
Purpose of the Study:
- To investigate the roles and mechanisms of hsa_circ_0020093 in ovarian cancer.
- To confirm the tumor-suppressive function of hsa_circ_0020093 in OC.
Main Methods:
- Confirmed decreased hsa_circ_0020093 expression in OC tissues and cell lines.
- Performed gain and loss of function studies in vitro and in vivo.
- Utilized RNA pull-down, mass spectrometry, RIP, qRT-PCR, transmission electron microscopy, RNA-sequencing, and luciferase reporter assays to elucidate molecular mechanisms.
Main Results:
- hsa_circ_0020093 expression negatively correlated with OC stage, metastasis, and CA125 levels.
- Overexpression of hsa_circ_0020093 inhibited OC tumor growth.
- Identified interactions between hsa_circ_0020093, mitochondrial protein LRPPRC, and the miR-107/LATS2 axis, impacting YAP signaling.
Conclusions:
- hsa_circ_0020093 suppresses OC progression through the hsa_circ_0020093/LRPPRC and hsa_circ_0020093/miR-107/LATS2 pathways.
- These findings highlight hsa_circ_0020093 as a potential therapeutic target for ovarian cancer.
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