4.8 Article

Estrogen-induced circRNA, circPGR, functions as a ceRNA to promote estrogen receptor-positive breast cancer cell growth by regulating cell cycle-related genes

期刊

THERANOSTICS
卷 11, 期 4, 页码 1732-1752

出版社

IVYSPRING INT PUBL
DOI: 10.7150/thno.45302

关键词

estrogen and estrogen receptor; circRNA; miRNA; cell cycle; ER-positive breast cancer

资金

  1. National Natural Science Foundation of China [91953114, 81761128015, 81861130370, 31871319, 91440112, 31422030, 31371292]
  2. Fujian Province Health Education Joint Research Project [WKJ2016-2-09]
  3. Xiamen Science and Technology Project [3502Z20173022]
  4. Xiamen Science and Technology major projects [3502Z2017100-120170302]
  5. Fundamental Research Funds for the Central University [20720190145, 2013121036]

向作者/读者索取更多资源

The study revealed that estrogen can induce a circRNA program, with circPGR playing a crucial role in ER-positive breast cancer cell growth and tumorigenesis by acting as a ceRNA for miR-301a-5p to regulate cell cycle genes.
Estrogen and estrogen receptor (ER)-regulated gene transcriptional events have been well known to be involved in ER-positive breast carcinogenesis. Meanwhile, circular RNAs (circRNAs) are emerging as a new family of functional non-coding RNAs (ncRNAs) with implications in a variety of pathological processes, such as cancer. However, the estrogen-regulated circRNA program and the function of such program remain uncharacterized. Methods: CircRNA sequencing (circRNA-seq) was performed to identify circRNAs induced by estrogen, and cell proliferation, colony formation, wound healing, transwell and tumor xenograft experiments were applied to examine the function of estrogen-induced circRNA, circPGR. RNA sequencing (RNA-seq) and ceRNA network analysis were performed to identify circPGR's target genes and the microRNA (miRNA) bound to circPGR. Anti-sense oligonucleotide (ASO) was used to assess circPGR's effects on ER-positive breast cancer cell growth. Results: Genome-wide circRNA profiling by circRNA sequencing (circRNA-seq) revealed that a large number of circRNAs were induced by estrogen, and further functional screening for the several circRNAs originated from PGR revealed that one of them, which we named as circPGR, was required for ER-positive breast cancer cell growth and tumorigenesis. CircPGR was found to be localized in the cytosol of cells and functioned as a competing endogenous RNA (ceRNA) to sponge miR-301a-5p to regulate the expression of multiple cell cycle genes. The clinical relevance of circPGR was underscored by its high and specific expression in ER-positive breast cancer cell lines and clinical breast cancer tissue samples. Accordingly, anti-sense oligonucleotide (ASO) targeting circPGR was proven to be effective in suppressing ER-positive breast cancer cell growth. Conclusions: These findings reveled that, besides the well-known messenger RNA (mRNA), microRNA (miRNA), long non-coding RNA (lncRNA) and enhancer RNA (eRNA) programs, estrogen also induced a circRNA program, and exemplified by circPGR, these estrogen-induced circRNAs were required for ER-positive breast cancer cell growth, providing a new class of therapeutic targets for ER-positive breast cancer.

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