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N-Alpha-Acetyltransferase 30, Transcriptionally Regulated by NR2C2, Promotes Ovarian Cancer Progression by Mediating
Liwen Xu1,2, Fei Zheng2, Dandan Wang2
1First Obstetric Ward, Dalian Women and Children's Medical Group, Dalian, China.
Abstract:
N-terminal acetyltransferases are emerging as potential therapeutic targets in cancer. N-alpha-acetyltransferase 30 (NAA30), which serves as the catalytic subunit of the NATC complex. However, the role of NAA30 in ovarian cancer remains unknown. In this study, we found that NAA30 expression was abnormally upregulated in ovarian cancer tissues compared to normal tissues. Functionally, NAA30 promoted cell proliferation, migration, and invasion in ovarian cancer cells. Moreover, in vivo experiments revealed that NAA30 enhanced tumor growth and intraperitoneal metastasis in mouse models. We further explored the regulatory mechanisms underlying NAA30 upregulation. Dual-luciferase assays demonstrated that the transcription factor nuclear receptor subfamily 2 group C member 2 (NR2C2) significantly enhanced the transcriptional activity of the NAA30 promoter. Besides, NR2C2 increased the migratory, invasive, and proliferative capabilities of ovarian cancer cells. Importantly, NAA30 knockdown reversed the pro-tumorigenic effects of NR2C2 overexpression on the malignant phenotype. To identify the downstream targets of NAA30, we employed IP-LC/MS and N-terminal acetylation modification omics. Actin-Related Protein 2/3 Complex Subunit 1B (ARPC1B) was identified as a direct target of NAA30. It was demonstrated that NAA30 protein binds to ARPC1B protein and that NAA30 knockdown enhanced the polyubiquitination of ARPC1B and promotes its degradation. Crucially, the re-expression of ARPC1B in NAA30-silenced cells effectively restored these malignant phenotypes. These findings highlight the critical role of the NR2C2-NAA30-ARPC1B axis in ovarian cancer progression and provide more foundation for the development of more effective treatment strategies for patients with ovarian cancer.
Insights
N-alpha-acetyltransferase 30 (NAA30) drives ovarian cancer growth and metastasis by regulating the NR2C2-NAA30-ARPC1B pathway. Targeting NAA30 offers a potential therapeutic strategy for ovarian cancer.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- N-terminal acetyltransferases are emerging therapeutic targets in cancer.
- The role of N-alpha-acetyltransferase 30 (NAA30) in ovarian cancer is currently unknown.
Purpose of the Study:
- To investigate the role and regulatory mechanisms of NAA30 in ovarian cancer progression.
- To identify downstream targets of NAA30 in ovarian cancer.
Main Methods:
- Analysis of NAA30 expression in ovarian cancer tissues.
- In vitro and in vivo functional assays to assess NAA30's role in cell proliferation, migration, invasion, tumor growth, and metastasis.
- Dual-luciferase assays to identify transcriptional regulators.
- Immunoprecipitation coupled with liquid chromatography-mass spectrometry (IP-LC/MS) and N-terminal acetylation omics to identify downstream targets.
- Western blotting and ubiquitination assays to study protein interactions and degradation.
Main Results:
- NAA30 expression is upregulated in ovarian cancer tissues and promotes proliferation, migration, and invasion.
- NAA30 enhances tumor growth and metastasis in vivo.
- Nuclear receptor subfamily 2 group C member 2 (NR2C2) enhances NAA30 promoter activity and promotes ovarian cancer cell malignancy.
- Actin-Related Protein 2/3 Complex Subunit 1B (ARPC1B) is a direct target of NAA30, and NAA30 promotes ARPC1B degradation.
- NAA30 knockdown reverses NR2C2-induced malignant phenotypes, and ARPC1B re-expression restores these phenotypes in NAA30-silenced cells.
Conclusions:
- The NR2C2-NAA30-ARPC1B axis plays a critical role in ovarian cancer progression.
- NAA30 is a potential therapeutic target for ovarian cancer treatment.
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