Follicular fluid progesterone downregulated HPGD and COX2 in granulosa cells via suppressing NF-ĸB in endometriosis

Author:

Li Jing-Yi1,Chen Jian-Peng1,Qian Yu-Li1,Ma Jun-Yan1,Ni Fei-Da1,Lin Yi-Feng1,Zhang Run-Ju1,Ying Yue1,Zhang Yan-Ye1,Wang Si-Wen1,Huang Yun1,Liu Juan1,Tu Mi-Xue1,Ying Yan-Yun1,Wu Yi-Qing1,Wu Xue-Chen2,Wu Bing-Bing2,Zhu Bo2,Zhang Dan1

Affiliation:

1. Key Laboratory of Reproductive Genetics (Ministry of Education) and Department of Reproductive Endocrinology, Women’s Hospital, Zhejiang University School of Medicine , Hangzhou, Zhejiang , P.R. China

2. Clinical Laboratory, Women’s Hospital, Zhejiang University School of Medicine , Hangzhou, Zhejiang , P.R. China

Abstract

AbstractIncreasing evidences showed that ovulatory dysfunction, possibly caused by luteinized unruptured follicular follicle syndrome (LUFS), is one of the reasons for endometriosis-related infertility. The present study was conducted to explore the potential effect of elevated progesterone in follicular fluid (FF) on ovulation in endometriosis. A prospective study including 50 ovarian endometriosis patients and 50 control patients with matched pairs design was conducted with alterations in FF and peritoneal fluid (PF) components identified by metabolomics analyses and differentially expressed genes in granulosa cells (GCs) identified by transcriptome analysis. Patients with endometriosis exhibited a significantly higher progesterone level in serum, FF, and PF. Granulosa cells from endometriosis patients revealed decreased expression of HPGD, COX-2, and suppressed NF-ĸB signaling. Similarly, progesterone treatment in vitro downregulated HPGD and COX2 expression and suppressed NF-ĸB signaling in granulosa tumor-like cell line KGN (Bena Culture Collection, China) and primarily cultured GCs, as manifested by decreased expressions of IL1R1, IRAK3, reduced pIĸBα/IĸBα ratio, and nucleus translocation of p65. On the contrary, TNF-α treatment increased expression of IL1R1, IRAK3, pIĸBα, p65, and HPGD in GCs. One potential p65 binding site was identified in the promoter region of HPGD by chromatin immunoprecipitation. In conclusion, we found that intrafollicular progesterone might downregulate HPGD and COX-2 in GCs via suppressing the NF-ĸB signaling pathway, shedding light on the mechanism underlying the endometriosis-related ovulatory dysfunction.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Key Research and Development Program of Zhejiang Province

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,General Medicine,Reproductive Medicine

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