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A link between mir-100 and FRAP1/mTOR in clear cell ovarian cancer
Ankur K Nagaraja1, Chad J Creighton, Zhifeng Yu
1Department of Pathology, Baylor College of Medicine, Houston, Texas 77030, USA.
Abstract:
MicroRNAs (miRNAs) are small noncoding RNAs that direct gene regulation through translational repression and degradation of complementary mRNA. Although miRNAs have been implicated as oncogenes and tumor suppressors in a variety of human cancers, functional roles for individual miRNAs have not been described in clear cell ovarian carcinoma, an aggressive and chemoresistant subtype of ovarian cancer. We performed deep sequencing to comprehensively profile miRNA expression in 10 human clear cell ovarian cancer cell lines compared with normal ovarian surface epithelial cultures and discovered 54 miRNAs that were aberrantly expressed. Because of the critical roles of the phosphatidylinositol 3-kinase/v-akt murine thymoma viral oncogene homolog 1/mammalian target of rapamycin (mTOR) pathway in clear cell ovarian cancer, we focused on mir-100, a putative tumor suppressor that was the most down-regulated miRNA in our cancer cell lines, and its up-regulated target, FRAP1/mTOR. Overexpression of mir-100 inhibited mTOR signaling and enhanced sensitivity to the rapamycin analog RAD001 (everolimus), confirming the key relationship between mir-100 and the mTOR pathway. Furthermore, overexpression of the putative tumor suppressor mir-22 repressed the EVI1 oncogene, which is known to suppress apoptosis by stimulating phosphatidylinositol 3-kinase/v-akt murine thymoma viral oncogene homolog 1 signaling. In addition to these specific effects, reversing the expression of mir-22 and the putative oncogene mir-182 had widespread effects on target and nontarget gene populations that ultimately caused a global shift in the cancer gene signature toward a more normal state. Our experiments have revealed strong candidate miRNAs and their target genes that may contribute to the pathogenesis of clear cell ovarian cancer, thereby highlighting alternative therapeutic strategies for the treatment of this deadly cancer.
Insights
This study identifies key microRNAs (miRNAs) and their targets in clear cell ovarian cancer. Restoring miRNA expression may offer new therapeutic strategies for this aggressive cancer.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- MicroRNAs (miRNAs) are small noncoding RNAs regulating gene expression.
- Their roles as oncogenes and tumor suppressors are known in various cancers.
- Functional roles of miRNAs in clear cell ovarian carcinoma (CCOC) remain largely undescribed.
Purpose of the Study:
- To comprehensively profile miRNA expression in CCOC.
- To identify specific miRNAs and their target genes involved in CCOC pathogenesis.
- To explore potential therapeutic strategies targeting miRNAs in CCOC.
Main Methods:
- Deep sequencing of miRNA expression in 10 CCOC cell lines and normal ovarian surface epithelial cultures.
- Analysis of aberrantly expressed miRNAs and their predicted target genes.
- Functional validation of miRNA-target interactions, including effects on signaling pathways and apoptosis.
Main Results:
- 54 miRNAs were found to be aberrantly expressed in CCOC cell lines.
- Down-regulation of the tumor suppressor mir-100 was observed, leading to up-regulation of its target, mammalian target of rapamycin (mTOR).
- Overexpression of mir-100 inhibited mTOR signaling and increased sensitivity to everolimus; mir-22 repressed the EVI1 oncogene, and reversing mir-22 and mir-182 expression shifted the cancer gene signature.
Conclusions:
- Specific miRNAs, including mir-100, mir-22, and mir-182, are key players in CCOC development.
- Targeting these miRNAs and their associated pathways presents a promising avenue for novel therapeutic strategies in CCOC.
- This research provides a foundation for developing miRNA-based therapies for clear cell ovarian cancer.
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