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Effect of hyperoside on cervical cancer cells and transcriptome analysis of differentially expressed genes
Weikang Guo1, Hui Yu2, Lu Zhang1
11Department of Gynecology, Harbin Medical University Cancer Hospital, No. 150 Haping Road, Nangang District, Harbin, 150081 Heilongjiang Province China.
Background:
Hyperoside (Hy) is a plant-derived quercetin 3-d-galactoside that exhibits inhibitory activities on various tumor types. The objective of the current study was to explore Hy effects on cervical cancer cell proliferation, and to perform a transcriptome analysis of differentially expressed genes.
Methods:
Cervical cancer HeLa and C-33A cells were cultured and the effect of Hy treatment was determined using the Cell Counting Kit-8 (CCK-8) assay. After calculating the IC50 of Hy in HeLa and C-33A cells, the more sensitive to Hy treatment cell type was selected for RNA-Seq. Differentially expressed genes (DEGs) were identified by comparing gene expression between the Hy and control groups. Candidate genes were determined through DEG analysis, protein interaction network (PPI) construction, PPI module analysis, transcription factor (TF) prediction, TF-target network construction, and survival analysis. Finally, the key candidate genes were verified by RT-qPCR and western blot.
Results:
Hy inhibited HeLa and C33A cell proliferation in a dose- and time-dependent manner, as determined by the CCK-8 assay. Treatment of C-33A cells with 2 mM Hy was selected for the subsequent experiments. Compared with the control group, 754 upregulated and 509 downregulated genes were identified after RNA-Seq. After functional enrichment, 74 gene ontology biological processes and 43 Kyoto Encyclopedia of Genes and Genomes pathways were obtained. According to the protein interaction network (PPI), PPI module analysis, TF-target network construction, and survival analysis, the key genes MYC, CNKN1A, PAX2, TFRC, ACOX2, UNC5B, APBA1, PRKACA, PEAR1, COL12A1, CACNA1G, PEAR1, and CCNA2 were detected. RT-qPCR was performed on the key genes, and Western blot was used to verify C-MYC and TFRC. C-MYC and TFRC expressions were lower and higher than the corresponding values in the control group, respectively, in accordance with the results from the RNA-Seq analysis.
Conclusion:
Hy inhibited HeLa and C-33A cell proliferation through C-MYC gene expression reduction in C-33A cells and TFRC regulation. The results of the current study provide a theoretical basis for Hy treatment of cervical cancer.
Insights
Hyperoside (Hy) effectively inhibits cervical cancer cell proliferation by reducing C-MYC and regulating TFRC gene expression. This study provides a foundation for using Hy as a cervical cancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Hyperoside (Hy), a plant-derived flavonoid, demonstrates inhibitory effects against various cancer types.
- Cervical cancer remains a significant global health concern, necessitating novel therapeutic strategies.
Purpose of the Study:
- To investigate the effects of Hyperoside (Hy) on cervical cancer cell proliferation.
- To perform a comprehensive transcriptome analysis to identify key genes and pathways involved in Hy's anti-cancer mechanism.
Main Methods:
- Cervical cancer cell lines (HeLa and C-33A) were treated with Hy, and proliferation was assessed using the Cell Counting Kit-8 (CCK-8) assay.
- RNA sequencing (RNA-Seq) was performed on Hy-treated cells to identify differentially expressed genes (DEGs).
- Bioinformatic analyses, including protein-protein interaction (PPI) network construction, transcription factor (TF) prediction, and survival analysis, were conducted. Key genes were validated using RT-qPCR and Western blot.
Main Results:
- Hy significantly inhibited cervical cancer cell proliferation in a dose- and time-dependent manner.
- RNA-Seq analysis revealed 754 upregulated and 509 downregulated genes in Hy-treated cells.
- Key genes, including MYC and TFRC, were identified as crucial in Hy's mechanism. Validation confirmed reduced C-MYC and altered TFRC expression.
Conclusions:
- Hyperoside exhibits anti-proliferative effects on cervical cancer cells, primarily through the downregulation of C-MYC and regulation of TFRC.
- These findings offer a theoretical basis for the potential application of Hyperoside in cervical cancer therapy.
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