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Lgr4 gene regulates corpus luteum maturation through modulation of the WNT-mediated EGFR-ERK signaling pathway

  • Hongjie Pan
  • , Hengxiang Cui
  • , Shijie Liu
  • , Yu Qian
  • , Haili Wu
  • , Liang Li
  • , Yuting Guan
  • , Xin Guan
  • , Long Zhang
  • , Heng Yu Fan
  • , Yanlin Ma
  • , Runsheng Li
  • , Mingyao Liu*
  • , Dali Li
  • *Corresponding author for this work
  • East China Normal University
  • Shanghai Institute of Planned Parenthood Research
  • Zhejiang University
  • Hainan Medical University
  • Texas A&M University

Research output: Contribution to journalArticlepeer-review

Abstract

Luteal-phase insufficiency is one of the major causes of female infertility, but the molecular mechanisms are still largely unknown. Here we found that disruption of Lgr4/Gpr48, the newly identified receptor for R-spondins, greatly reduced female fertility in mice. The expression of Lgr4 was induced specifically in granulosa-lutein cells during luteinization. In Lgr4-deficient female mice, the estrous cycle was prolonged and serum progesterone levels were dramatically downregulated. In Lgr4-/-corpora lutea, the expression of key enzymes for steroidogenesis as well as common luteal marker genes was significantly decreased. Additionally, the activity of epidermal growth factor receptor (EGFR)-ERK signaling was attenuated in Lgr4-/-granulosa-lutein cells. We found that the maturation of Lgr4-/-cells was impaired in cultured primary granulosa cells, but the defect was partially rescued by reactivation of EGFR signaling by heparin-binding EGF-like growth factor treatment. We found that the expression of wingless-type MMTV integration site family (WNT)/catenin (cadherin associated protein), beta 1 (CTNNB1) downstream targets, including matrix metalloproteinase 9, which is a critical matrix metalloproteinase for activation of EGF-like factors, was significantly downregulated in Lgr4-/-ovaries. Matrix metalloproteinase 9 inhibitor treatment attenuated human chorionic gonadotropin-but not heparin-binding EGF-like growth factor-induced ERK activation and luteinization in primary granulosa cells. Together, we report that Lgr4 modulates WNT-mediated EGFR-ERK signaling to facilitate corpus luteum maturation and ovarian steroidogenesis to maintain female reproduction.

Original languageEnglish
Pages (from-to)3624-3637
Number of pages14
JournalEndocrinology
Volume155
Issue number9
DOIs
StatePublished - 1 Sep 2014

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