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The estrogen-regulated lncRNA H19/miR-216a-5p axis alters stromal cell invasion and migration via ACTA2 in endometriosis.
- Source :
-
Molecular human reproduction [Mol Hum Reprod] 2019 Sep 01; Vol. 25 (9), pp. 550-561. - Publication Year :
- 2019
-
Abstract
- Fibrotic tissue may contribute to the origin of some endometriosis-related symptoms, such as chronic pelvic pain and infertility. Alterations in the H19/miR-216a-5p/ACTA2 pathway may mediate the regulation of eutopic endometrial stromal cell (euESC) invasion and migration and may represent a potential mechanism underlying fibrous tissue formation or fibrosis in women with endometriosis. In this study, we aimed to determine the expression of H19 and ACTA2 in endometrial tissues of women with endometriosis. Two groups of 23 infertile women with endometriosis and 23 matched infertile women without endometriosis were investigated. Primary cultured cells of endometrial tissues were analyzed using RT-PCR and western blotting (WB) to determine expression of H19 and ACTA2. 5-Ethyl-2'-deoxyuridine, CCK8 and Transwell assays were used to study the functions of H19 and ACTA2. Human embryonic kidney 293 cells were used for luciferase assays to study miR-216a-5p binding sites with H19 and ACTA2. We found that H19 and ACTA2 levels were significantly higher in endometriosis euESCs than in control euESCs (Pā<ā0.05) and were positively correlated in endometriosis euESCs. Luciferase assays indicated that H19 regulates ACTA2 expression via competition for inhibitory miR-216a-5p binding sites. Our results indicate that alterations in the estrogen/H19/miR-216a-5p/ACTA2 pathway regulated endometriosis euESC invasion and migration. Downregulation of H19 or ACTA2 inhibited endometriosis euESC invasion and migration; however, estrogen promoted endometriosis euESC invasion and migration via H19. The main limitation of our study was that experiments were conducted in vitro and further in vivo studies are required in the future. However, our study showed that primary cultured cells represented endometriosis cells more clearly than cell lines.<br /> (© The Author(s) 2019. Published by Oxford University Press on behalf of the European Society of Human Reproduction and Embryology. All rights reserved. For permissions, please e-mail: journals.permission@oup.com.)
- Subjects :
- Adult
Case-Control Studies
Cell Adhesion drug effects
Cell Adhesion genetics
Cell Movement drug effects
Cell Movement genetics
Cells, Cultured
Endometrium metabolism
Endometrium pathology
Female
Gene Expression Regulation drug effects
HEK293 Cells
Humans
Infertility, Female genetics
Infertility, Female pathology
MicroRNAs drug effects
Primary Cell Culture
RNA, Long Noncoding drug effects
Signal Transduction drug effects
Signal Transduction genetics
Stromal Cells drug effects
Young Adult
Actins physiology
Endometriosis genetics
Endometriosis pathology
Endometriosis physiopathology
Estradiol pharmacology
MicroRNAs genetics
Peritoneal Diseases genetics
Peritoneal Diseases pathology
Peritoneal Diseases physiopathology
RNA, Long Noncoding genetics
Stromal Cells physiology
Subjects
Details
- Language :
- English
- ISSN :
- 1460-2407
- Volume :
- 25
- Issue :
- 9
- Database :
- MEDLINE
- Journal :
- Molecular human reproduction
- Publication Type :
- Academic Journal
- Accession number :
- 31323679
- Full Text :
- https://doi.org/10.1093/molehr/gaz040