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Updated: Jan 21, 2026

Enrichment for Chemoresistant Ovarian Cancer Stem Cells from Human Cell Lines
Published on: September 10, 2014
SNORD89 promotes stemness phenotype of ovarian cancer cells by regulating Notch1-c-Myc pathway
Wenjing Zhu1,2, Jumin Niu3, Miao He1,4
1Department of Pharmacology, School of Pharmacy, China Medical University, No. 77 Puhe Road, Shenyang North New Area, Shenyang, 110122, Liaoning, People's Republic of China.
Background:
Ovarian cancer is the leading cause of death in gynecological cancer. Cancer stem cells (CSCs) contribute to the occurrence, progression and resistance. Small nucleolar RNAs (SnoRNAs), a class of small molecule non-coding RNA, involve in the cancer cell stemness and tumorigenesis.
Methods:
In this study, we screened out SNORNAs related to ovarian patient's prognosis by analyzing the data of 379 cases of ovarian cancer patients in the TCGA database, and analyzed the difference of SNORNAs expression between OVCAR-3 (OV) sphere-forming (OS) cells and OV cells. After overexpression or knockdown SNORD89, the expression of Nanog, CD44, and CD133 was measured by qRT-PCR or flow cytometry analysis in OV, CAOV-3 (CA) and OS cells, respectively. CCK-8 assays, plate clone formation assay and soft agar colony formation assay were carried out to evaluate the changes of cell proliferation and self-renewal ability. Scratch migration assay and trans-well invasion analysis were used for assessing the changes of migration and invasion ability.
Results:
High expression of SNORD89 indicates the poor prognosis of ovarian cancer patients and was associated with patients' age, therapy outcome. SNORD89 highly expressed in ovarian cancer stem cells. The overexpression of SNORD89 resulted in the increased stemness markers, S phase cell cycle, cell proliferation, invasion and migration ability in OV and CA cells. Conversely, these phenomena were reversed after SNORD89 silencing in OS cells. Further, we found that SNORD89 could upregulate c-Myc and Notch1 expression in mRNA and protein levels. SNORD89 deteriorates the prognosis of ovarian cancer patients by regulating Notch1-c-Myc pathway to promote cell stemness and acts as an oncogene in ovarian tumorigenesis. Consequently, SNORD89 can be a novel prognostic biomarker and therapeutic target for ovarian cancer.
Insights
High SNORD89 expression in ovarian cancer correlates with poor prognosis and increased cancer stem cell properties. This small nucleolar RNA promotes tumor growth and may serve as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Ovarian cancer is a leading cause of gynecological cancer mortality.
- Cancer stem cells (CSCs) drive ovarian cancer's occurrence, progression, and treatment resistance.
- Small nucleolar RNAs (SnoRNAs) are implicated in cancer cell stemness and tumorigenesis.
Purpose of the Study:
- To identify Small Nucleolar RNAs (SnoRNAs) associated with ovarian cancer patient prognosis.
- To investigate the role of SNORD89 in ovarian cancer stemness and tumorigenesis.
Main Methods:
- Analyzed TCGA database for 379 ovarian cancer cases to screen prognostic SNORDNAs.
- Assessed SNORD89 expression differences in ovarian cancer stem cells versus standard cells.
- Utilized qRT-PCR, flow cytometry, CCK-8, clone formation, soft agar, scratch migration, and trans-well assays to evaluate SNORD89's functional impact.
Main Results:
- High SNORD89 expression is linked to poor ovarian cancer prognosis, patient age, and therapy outcomes.
- SNORD89 is significantly upregulated in ovarian cancer stem cells.
- Overexpressing SNORD89 enhanced stemness markers, proliferation, cell cycle progression, invasion, and migration; silencing reversed these effects.
- SNORD89 upregulates Notch1 and c-Myc at mRNA and protein levels, activating the Notch1-c-Myc pathway.
Conclusions:
- SNORD89 promotes ovarian cancer stemness and tumorigenesis by regulating the Notch1-c-Myc pathway.
- SNORD89 serves as a potential prognostic biomarker and therapeutic target for ovarian cancer.
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