Bone morphogenetic protein 2 functions via a conserved signaling pathway involving Wnt4 to regulate uterine decidualization in the mouse and the human
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⤵ 18 in-corpus citations
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Bone morphogenetic protein 2 (BMP2) acts via a conserved Wnt4 signaling pathway to regulate uterine decidualization in mice and humans.
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Abstract
A critical role of progesterone (P) during early pregnancy is to induce differentiation of the endometrial stromal cells into specialized decidual cells that support the development of the implanting embryo. The P-induced signaling pathways that participate in the formation and function of the decidual cells remain poorly understood. We report here that the expression of the bone morphogenetic protein 2 (BMP2), a morphogen belonging to the TGFbeta superfamily, is induced downstream of P action in the mouse uterine stroma during decidualization. To determine the function of BMP2 during this differentiation process, we employed a primary culture system in which undifferentiated stromal cells isolated from pregnant mouse uterus undergo decidualization. When recombinant BMP2 was added to these stromal cultures, it markedly advanced the differentiation program. We also found that siRNA-mediated silencing of BMP2 expression in these cells efficiently blocked the differentiation process. Gene expression profiling experiments identified Wnt4 as a downstream target of BMP2 regulation in stromal cells undergoing decidualization. Attenuation of Wnt4 expression by siRNAs greatly reduced stromal differentiation in vitro, indicating that it is a key mediator of BMP2-induced decidualization. We also observed a remarkable induction in the expression of BMP2 in human endometrial stromal cells during decidualization in vitro in response to steroids and cAMP. Addition of BMP2 to these cultures led to a robust enhancement of Wnt4 expression and stimulated the differentiation process. Collectively, our studies uncovered a unique conserved pathway involving BMP2 and Wnt4 that mediates P-induced stromal decidualization in the mouse and the human.
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Cited by (18)
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- Fibroids and unexplained infertility treatment with epigallocatechin gallate: a natural compound in green tea (FRIEND) - protocol for a randomised placebo-controlled US multicentre clinical trial of EGCG to improve fertility in women with uterine fibroids 2024
- Unraveling the Dynamics of Estrogen and Progesterone Signaling in the Endometrium: An Overview 2024
- Roles of bone morphogenetic proteins in endometrial remodeling during the human menstrual cycle and pregnancy 2023
- Calpain7 negatively regulates human endometrial stromal cell decidualization in EMs by promoting FoxO1 nuclear exclusion via hydrolyzing AKT1 2022
- Follistatin is a crucial chemoattractant for mouse decidualized endometrial stromal cell migration by JNK signalling 2022
- Investigation of Murine Fertility by Kampo Formula Containing Astragalus Root Enhanced Endometrial Wnt/β-catenin Signaling Factors 2020
- Progesterone and Estrogen Signaling in the Endometrium: What Goes Wrong in Endometriosis? 2019
- Abnormal Uterine Bleeding Is Associated With Increased BMP7 Expression in Human Endometrium 2016
- Lovastatin Reduces Stemness via Epigenetic Reprograming of BMP2 and GATA2 in Human Endometrium and Endometriosis 2016
- Participation of WNT and β-Catenin in Physiological and Pathological Endometrial Changes: Association with Angiogenesis 2015
- Human Oviduct and Endometrium 2014
- G protein-coupled estrogen receptor (GPER) expression in normal and abnormal endometrium 2012
- Immunohistochemical analysis of bone morphological protein signaling pathway in human myometrium 2012
- Interaction between sex hormones and WNT/β-catenin signal transduction in endometrial physiology and disease 2011
- The progesterone receptor regulates implantation, decidualization, and glandular development via a complex paracrine signaling network 2011
- Functional microRNA involved in endometriosis 2011
- Progesterone decreases bone morphogenetic protein (BMP) 7 expression and BMP7 inhibits decidualization and proliferation in endometrial stromal cells 2010
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- last seen: 2026-06-10T17:14:06.276822+00:00
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- last seen: 2026-10-08T21:04:39.942088+00:00
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