Endometriosis Knowledgebase


A repository for genes associated with endometriosis

Results


PMID 26675296
Gene Name TGFB1
Condition Endometriosis
Association Associated
Population size 55
Population details 55 (47 patient tissues (23 with adenomyotic myometrium, 24 with chocolate cyst))
Sex Female
Associated genes OCT4
Other associated phenotypes Endometriosis
TGF-betaI Regulates Cell Migration through Pluripotent Transcription Factor OCT4 in Endometriosis.

PLoS One. 2015 Dec 16;10(12):e0145256. doi: 10.1371/journal.pone.0145256.

Au, Heng-Kien| Chang, Jui-Hung| Wu, Yu-Chih| Kuo, Yung-Che| Chen, Yu-Hsi| Lee, Wei-Chin| Chang, Te-Sheng| Lan, Pei-Chi| Kuo, Hung-Chih| Lee, Kha-Liang| Lee, Mei-Tsu| Tzeng, Chii-Ruey| Huang, Yen-Hua

Department of Obstetrics and Gynecology, School of Medicine, College of Medicine, Taipei Medical University, Taipei, Taiwan.| Center for Reproductive Medicine, Taipei Medical University Hospital, Taipei Medical University, Taipei, Taiwan.| Department

Transforming growth factor (TGF-beta)/TGF-beta receptor signal is known to promote cell migration. Up-regulation of TGF-beta in serum/peritoneal fluid and increased levels of pluripotent transcription factor OCT4 in endometriotic tissues are frequently observed in patients with endometriosis. However, the mechanisms underlying how TGF-beta/TGF-beta receptor and OCT4 affect endometriotic cell migration still remain largely unknown. Therefore, endometriotic tissue with high cell migratory capacity were collected from patients with adenomyotic myometrium (n = 23) and chocolate cyst (n = 24); and endometrial tissue with low cell migratory capacity in normal endometrium or hyperplastic endometrium (n = 8) were collected as the controls. We found the mRNA levels of TGF-beta receptor I (TGF-beta RI) and OCT4 were significantly higher in the high-migratory ectopic endometriotic tissues than those of the low-migratory normal or hyperplastic endometrium. Positive correlations between TGF-beta RI and OCT4, and either TGF-beta RI or OCT4 with migration-related genes (SNAIL, SLUG and TWIST) regarding the mRNA levels were observed in human endometriotic tissues. TGF-betaI dose-dependently increased the gene and protein levels of OCT4, SNAIL and N-Cadherin (N-CAD) and silencing of endogenous OCT4 significantly suppressed the TGF-betaI-induced expressions of N-CAD and SNAIL in primary human endometriotic stromal cells and human endometrial carcinoma cell lines RL95-2 and HEC1A. Furthermore, TGF-betaI significantly increased the migration ability of endometriotic cells and silencing of OCT4 dramatically suppressed the TGF-betaI-induced cell migration activity evidenced by wound-closure assay, transwell assay, and confocal image of F-actin cellular distribution. In conclusion, the present findings demonstrate that the niche TGF-beta plays a critical role in initiating expressions of pluripotent transcription factor OCT4 which may contribute to the ectopic endometrial growth by stimulating endometrial cell migration. These findings would be useful for developing therapeutic strategies targeting TGF-beta-OCT4 signaling to prevent endometriosis in the future.

Mesh Terms: Adult| Cadherins/genetics/metabolism| Cell Line, Tumor| *Cell Movement| Endometriosis/*metabolism| Female| Humans| Middle Aged| Nuclear Proteins/genetics/metabolism| Octamer Transcription Factor-3/genetics/*metabolism| Protein-Serine-Threonine K