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SFRP3 negatively regulates placental extravillous trophoblast cell migration mediated by the GCM1-WNT10B-FZD7 axis
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SFRP3 negatively regulates placental extravillous trophoblast cell migration mediated by the GCM1-WNT10B-FZD7 axis

Liang-Jie Wang, Hsiao-Fan Lo, Cheng-Fu Lin, Pui-Sze Ng, Yi-Hung Wu, Yun-Shien Lee, Mei-Leng CheongHungwen Chen
FASEB Journal, 卷.33(1), 頁碼.314-326
01/2019
PMID: 29979633

摘要

Cytoskeletal remodeling Gene expression Pregnancy Trophoblast-decidual cell interaction Biotechnology Biochemistry Molecular Biology Genetics
Migration of placental extravillous trophoblast (EVT) cells into uterine decidua facilitates the establishment of blood circulation betweenmother and fetus and is modulated by EVT-decidual cell interaction. Poor or excessive EVTmigration is associatedwith pregnancy complications such as preeclampsia or placenta accreta.Glial cellsmissing 1 (GCM1) transcription factor is essential for placental development, and decreasedGCM1 activity is detected inpreeclampsia.To study whetherGCM1regulates trophoblast cellmigration,herewe showedthatGCM1 promotes BeWo and JAR trophoblast cell migration through a novel target gene, WNT10B. Moreover, WNT10B signaling stimulated cytoskeletal remodeling via Rac1 and frizzled 7 (FZD7) was identified as the cognate receptor for WNT10B to up-regulate cell migration. We further showed that secreted frizzled-related protein 3 (SFRP3) is expressedinuterine decidual cellsby immunohistochemistry and that SFRP3expressionintelomerase-transformed human endometrial stromal cells (T-HESCs) is elevated under decidualization stimuli and further enhanced by bone morphogenetic protein 2 via SMAD1. SFRP3 blocked the interaction between FZD7 andWNT10B to decrease BeWo cellmigration,which corroborated the elevated BeWo cellmigrationwhen coculturedwith decidualized and SFRP3-knockdown T-HESC monolayer. Our results suggest that GCM1 up-regulates EVT cell migration through WNT10B and FZD7, which is negativelymodulated by decidual SFRP3.

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