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Targeting Ovarian Cancer Stem Cells by Dual Inhibition of the Long Noncoding RNA HOTAIR and Lysine Methyltransferase
Weini Wang1, Yanchi Zhou1, Ji Wang1
1Indiana University School of Medicine, Bloomington, Indiana.
Abstract:
The persistence of cancer stem cells (CSC) is believed to contribute to resistance to platinum-based chemotherapy and disease relapse in ovarian cancer, the fifth leading cause of cancer-related death among US women. HOXC transcript antisense RNA (HOTAIR) is a long, noncoding RNA (lncRNA) overexpressed in high-grade serous ovarian cancer and linked to chemoresistance. However, HOTAIR impacts chromatin dynamics in ovarian CSCs. Oncogenic lncRNA's contributions to drug-resistant disease are incompletely understood. Here, we generated HOTAIR knockout (KO) high-grade serous ovarian cancer cell lines using paired CRISPR guide RNA design to investigate the function of HOTAIR. We show the loss of HOTAIR function resensitized ovarian cancer cells to platinum treatment and decreased the population of ovarian CSCs. Furthermore, HOTAIR KO inhibited the development of stemness-related phenotypes, including spheroid formation ability and expression of key stemness-associated genes ALDH1A1, NOTCH3, SOX9, and PROM1. HOTAIR KO altered the cellular transcriptome and chromatin accessibility landscape of multiple oncogenic-associated genes and pathways, including the NF-kB pathway. HOTAIR functions as an oncogene by recruiting enhancer of zeste homolog 2 (EZH2) to catalyze H3K27 trimethylation to suppress downstream tumor suppressor genes, and it was of interest to inhibit both HOTAIR and EZH2. In vivo, combining a HOTAIR inhibitor with an EZH2 inhibitor and platinum chemotherapy decreased tumor formation and increased survival. These results suggest a key role for HOTAIR in ovarian CSCs and malignant potential. Targeting HOTAIR in combination with epigenetic therapies may represent a therapeutic strategy to ameliorate ovarian cancer progression and resistance to platinum-based chemotherapy.
Insights
Targeting HOTAIR, a long noncoding RNA, can resensitize ovarian cancer cells to chemotherapy by reducing cancer stem cells and inhibiting tumor growth. Combining HOTAIR and EZH2 inhibitors with chemotherapy shows promise for treating ovarian cancer.
Area of Science:
- Molecular Oncology
- Epigenetics
- RNA Biology
Background:
- Ovarian cancer relapse and chemoresistance are linked to cancer stem cells (CSCs).
- The long noncoding RNA HOTAIR is overexpressed in ovarian cancer and associated with chemoresistance.
Purpose of the Study:
- To investigate the function of HOTAIR in ovarian cancer stem cells and chemoresistance.
- To explore therapeutic strategies targeting HOTAIR and EZH2 in combination with platinum chemotherapy.
Main Methods:
- Generated HOTAIR knockout (KO) ovarian cancer cell lines using CRISPR-Cas9 technology.
- Assessed effects of HOTAIR KO on platinum sensitivity, CSC population, stemness phenotypes, and gene expression.
- Investigated the in vivo efficacy of combined HOTAIR inhibitor, EZH2 inhibitor, and platinum chemotherapy.
Main Results:
- Loss of HOTAIR resensitized ovarian cancer cells to platinum treatment and reduced CSCs.
- HOTAIR KO inhibited stemness phenotypes and altered the transcriptome and chromatin accessibility, including the NF-kB pathway.
- Combined HOTAIR and EZH2 inhibition with chemotherapy decreased tumor formation and improved survival in vivo.
Conclusions:
- HOTAIR plays a critical role in ovarian CSCs, promoting chemoresistance and malignant potential.
- Targeting HOTAIR, potentially with EZH2 inhibitors and platinum chemotherapy, offers a promising therapeutic strategy for ovarian cancer.
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