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A Positive Feedback Loop Involving Gcm1 and Fzd5 Directs Chorionic Branching Morphogenesis in the Placenta

Chorioallantoic branching morphogenesis is a key milestone during placental development, creating the large surface area for nutrient and gas exchange, and is therefore critical for the success of term pregnancy. Several Wnt pathway molecules have been shown to regulate placental development. Howeve...

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Autores principales: Lu, Jinhua, Zhang, Shuang, Nakano, Haruo, Simmons, David G., Wang, Shumin, Kong, Shuangbo, Wang, Qiang, Shen, Lianju, Tu, Zhaowei, Wang, Weixiang, Wang, Bingyan, Wang, Hongmei, Wang, Yanling, van Es, Johan H., Clevers, Hans, Leone, Gustavo, Cross, James C., Wang, Haibin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3627642/
https://www.ncbi.nlm.nih.gov/pubmed/23610556
http://dx.doi.org/10.1371/journal.pbio.1001536
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author Lu, Jinhua
Zhang, Shuang
Nakano, Haruo
Simmons, David G.
Wang, Shumin
Kong, Shuangbo
Wang, Qiang
Shen, Lianju
Tu, Zhaowei
Wang, Weixiang
Wang, Bingyan
Wang, Hongmei
Wang, Yanling
van Es, Johan H.
Clevers, Hans
Leone, Gustavo
Cross, James C.
Wang, Haibin
author_facet Lu, Jinhua
Zhang, Shuang
Nakano, Haruo
Simmons, David G.
Wang, Shumin
Kong, Shuangbo
Wang, Qiang
Shen, Lianju
Tu, Zhaowei
Wang, Weixiang
Wang, Bingyan
Wang, Hongmei
Wang, Yanling
van Es, Johan H.
Clevers, Hans
Leone, Gustavo
Cross, James C.
Wang, Haibin
author_sort Lu, Jinhua
collection PubMed
description Chorioallantoic branching morphogenesis is a key milestone during placental development, creating the large surface area for nutrient and gas exchange, and is therefore critical for the success of term pregnancy. Several Wnt pathway molecules have been shown to regulate placental development. However, it remains largely unknown how Wnt-Frizzled (Fzd) signaling spatiotemporally interacts with other essential regulators, ensuring chorionic branching morphogenesis and angiogenesis during placental development. Employing global and trophoblast-specific Fzd5-null and Gcm1-deficient mouse models, combining trophoblast stem cell lines and tetraploid aggregation assay, we demonstrate here that an amplifying signaling loop between Gcm1 and Fzd5 is essential for normal initiation of branching in the chorionic plate. While Gcm1 upregulates Fzd5 specifically at sites where branching initiates in the basal chorion, this elevated Fzd5 expression via nuclear β-catenin signaling in turn maintains expression of Gcm1. Moreover, we show that Fzd5-mediated signaling induces the disassociation of cell junctions for branching initiation via downregulating ZO-1, claudin 4, and claudin 7 expressions in trophoblast cells at the base of the chorion. In addition, Fzd5-mediated signaling is also important for upregulation of Vegf expression in chorion trophoblast cells. Finally, we demonstrate that Fzd5-Gcm1 signaling cascade is operative during human trophoblast differentiation. These data indicate that Gcm1 and Fzd5 function in an evolutionary conserved positive feedback loop that regulates trophoblast differentiation and sites of chorionic branching morphogenesis.
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spelling pubmed-36276422013-04-22 A Positive Feedback Loop Involving Gcm1 and Fzd5 Directs Chorionic Branching Morphogenesis in the Placenta Lu, Jinhua Zhang, Shuang Nakano, Haruo Simmons, David G. Wang, Shumin Kong, Shuangbo Wang, Qiang Shen, Lianju Tu, Zhaowei Wang, Weixiang Wang, Bingyan Wang, Hongmei Wang, Yanling van Es, Johan H. Clevers, Hans Leone, Gustavo Cross, James C. Wang, Haibin PLoS Biol Research Article Chorioallantoic branching morphogenesis is a key milestone during placental development, creating the large surface area for nutrient and gas exchange, and is therefore critical for the success of term pregnancy. Several Wnt pathway molecules have been shown to regulate placental development. However, it remains largely unknown how Wnt-Frizzled (Fzd) signaling spatiotemporally interacts with other essential regulators, ensuring chorionic branching morphogenesis and angiogenesis during placental development. Employing global and trophoblast-specific Fzd5-null and Gcm1-deficient mouse models, combining trophoblast stem cell lines and tetraploid aggregation assay, we demonstrate here that an amplifying signaling loop between Gcm1 and Fzd5 is essential for normal initiation of branching in the chorionic plate. While Gcm1 upregulates Fzd5 specifically at sites where branching initiates in the basal chorion, this elevated Fzd5 expression via nuclear β-catenin signaling in turn maintains expression of Gcm1. Moreover, we show that Fzd5-mediated signaling induces the disassociation of cell junctions for branching initiation via downregulating ZO-1, claudin 4, and claudin 7 expressions in trophoblast cells at the base of the chorion. In addition, Fzd5-mediated signaling is also important for upregulation of Vegf expression in chorion trophoblast cells. Finally, we demonstrate that Fzd5-Gcm1 signaling cascade is operative during human trophoblast differentiation. These data indicate that Gcm1 and Fzd5 function in an evolutionary conserved positive feedback loop that regulates trophoblast differentiation and sites of chorionic branching morphogenesis. Public Library of Science 2013-04-16 /pmc/articles/PMC3627642/ /pubmed/23610556 http://dx.doi.org/10.1371/journal.pbio.1001536 Text en © 2013 Lu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lu, Jinhua
Zhang, Shuang
Nakano, Haruo
Simmons, David G.
Wang, Shumin
Kong, Shuangbo
Wang, Qiang
Shen, Lianju
Tu, Zhaowei
Wang, Weixiang
Wang, Bingyan
Wang, Hongmei
Wang, Yanling
van Es, Johan H.
Clevers, Hans
Leone, Gustavo
Cross, James C.
Wang, Haibin
A Positive Feedback Loop Involving Gcm1 and Fzd5 Directs Chorionic Branching Morphogenesis in the Placenta
title A Positive Feedback Loop Involving Gcm1 and Fzd5 Directs Chorionic Branching Morphogenesis in the Placenta
title_full A Positive Feedback Loop Involving Gcm1 and Fzd5 Directs Chorionic Branching Morphogenesis in the Placenta
title_fullStr A Positive Feedback Loop Involving Gcm1 and Fzd5 Directs Chorionic Branching Morphogenesis in the Placenta
title_full_unstemmed A Positive Feedback Loop Involving Gcm1 and Fzd5 Directs Chorionic Branching Morphogenesis in the Placenta
title_short A Positive Feedback Loop Involving Gcm1 and Fzd5 Directs Chorionic Branching Morphogenesis in the Placenta
title_sort positive feedback loop involving gcm1 and fzd5 directs chorionic branching morphogenesis in the placenta
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3627642/
https://www.ncbi.nlm.nih.gov/pubmed/23610556
http://dx.doi.org/10.1371/journal.pbio.1001536
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