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Published on: January 12, 2020
ZFHX2-AS1 interacts with DKC1 to regulate ARHGAP5 pseudouridylation and suppress ovarian cancer progression
Yongshun Dong1, Zili Zhang2, Hongmei Huang3
1The Key Laboratory of Advanced Interdisciplinary Studies, Institute for Chemical Carcinogenesis, School of Public Health, Guangzhou Medical University, 1 Xinzao Road, Panyu District, Guangzhou 511436, China; Shenzhen Luohu Hospital of Traditional Chinese Medicine, Shenzhen, Guangdong, China.
Abstract:
Ovarian cancer (OCa) remains a highly lethal disease, largely due to late-stage diagnosis and limited treatment options for recurrent metastatic tumors. Long non-coding RNAs (lncRNAs) have been recognized as key regulators of cancer hallmarks, yet their specific roles in driving OCa progression are not fully understood. In this study, we employed an integrated approach combining clinical correlation, functional assays, and mechanistic investigations to reveal that lncRNA ZFHX2-AS1 is significantly downregulated in OCa tissues and cells, with its reduced expression associated with poor clinical outcomes. Using in vitro and in vivo models, we demonstrated that overexpression of ZFHX2-AS1 suppresses OCa cell proliferation, migration and invasion, whereas ZFHX2-AS1 knockdown enhances these malignant phenotypes. Mechanistically, we defined that ZFHX2-AS1 interacts with and attenuates the enzymatic activity of the pseudouridine synthase DKC1, thereby reducing pseudouridylation and stabilizing the oncogenic ARHGAP5 mRNA. Re-expression of ARHGAP5 could partially reverse the tumor-suppressive effects of ZFHX2-AS1. Further, we found that ARHGAP5 promotes epithelial-mesenchymal transition (EMT) by regulating Rho GTPases activities, and that ZFHX2-AS1 inhibits EMT in OCa by downregulating ARHGAP5 expression and suppressing the Rho GTPase signaling pathway. Taken together, our findings identify ZFHX2-AS1 as a potent tumor suppressor in OCa, acting through the modulation of DKC1-mediated pseudouridylation of ARHGAP5 and the inhibition of the Rho GTPase pathway, thus offering a potential therapeutic target for combating OCa progression.
Insights
Long non-coding RNA ZFHX2-AS1 acts as a tumor suppressor in ovarian cancer (OCa). Its downregulation promotes OCa progression by stabilizing ARHGAP5, offering a potential therapeutic target for this lethal disease.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Ovarian cancer (OCa) is a lethal disease with limited treatment options for advanced stages.
- Long non-coding RNAs (lncRNAs) play roles in cancer, but their specific functions in OCa progression are not fully understood.
Purpose of the Study:
- To investigate the role of lncRNA ZFHX2-AS1 in ovarian cancer progression.
- To elucidate the molecular mechanisms underlying ZFHX2-AS1's function in OCa.
Main Methods:
- Integrated approach: clinical correlation, functional assays (in vitro and in vivo), and mechanistic investigations.
- Analysis of ZFHX2-AS1 expression in OCa tissues and cells.
- Investigation of ZFHX2-AS1 interactions with DKC1 and ARHGAP5 mRNA.
- Assessment of ARHGAP5's role in epithelial-mesenchymal transition (EMT) and Rho GTPase signaling.
Main Results:
- ZFHX2-AS1 is downregulated in OCa, correlating with poor outcomes.
- ZFHX2-AS1 overexpression suppresses OCa cell proliferation, migration, and invasion.
- ZFHX2-AS1 inhibits DKC1 activity, reducing ARHGAP5 mRNA pseudouridylation and stabilization.
- ZFHX2-AS1 suppresses EMT by downregulating ARHGAP5 and inhibiting Rho GTPase signaling.
Conclusions:
- ZFHX2-AS1 functions as a tumor suppressor in ovarian cancer.
- ZFHX2-AS1 exerts its effects by modulating DKC1-mediated ARHGAP5 pseudouridylation and inhibiting Rho GTPase signaling.
- ZFHX2-AS1 represents a potential therapeutic target for ovarian cancer treatment.
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