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      β-Catenin is required for endothelial-mesenchymal transformation during heart cushion development in the mouse

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          Abstract

          During heart development endocardial cells within the atrio-ventricular (AV) region undergo TGFβ-dependent epithelial-mesenchymal transformation (EMT) and invade the underlying cardiac jelly. This process gives rise to the endocardial cushions from which AV valves and part of the septum originate. In this paper we show that in mouse embryos and in AV explants TGFβ induction of endocardial EMT is strongly inhibited in mice deficient for endothelial β-catenin, leading to a lack of heart cushion formation. Using a Wnt-signaling reporter mouse strain, we demonstrated in vivo and ex vivo that EMT in heart cushion is accompanied by activation of β-catenin/TCF/Lef transcriptional activity. In cultured endothelial cells, TGFβ2 induces α-smooth muscle actin (αSMA) expression. This process was strongly reduced in β-catenin null cells, although TGFβ2 induced smad phosphorylation was unchanged. These data demonstrate an involvement of β-catenin/TCF/Lef transcriptional activity in heart cushion formation, and suggest an interaction between TGFβ and Wnt-signaling pathways in the induction of endothelial-mesenchymal transformation.

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          Most cited references40

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          Convergence of Wnt, beta-catenin, and cadherin pathways.

          W Nelson (2004)
          The specification and proper arrangements of new cell types during tissue differentiation require the coordinated regulation of gene expression and precise interactions between neighboring cells. Of the many growth factors involved in these events, Wnts are particularly interesting regulators, because a key component of their signaling pathway, beta-catenin, also functions as a component of the cadherin complex, which controls cell-cell adhesion and influences cell migration. Here, we assemble evidence of possible interrelations between Wnt and other growth factor signaling, beta-catenin functions, and cadherin-mediated adhesion.
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            How cells read TGF-beta signals.

            Cell proliferation, differentiation and death are controlled by a multitude of cell-cell signals, and loss of this control has devastating consequences. Prominent among these regulatory signals is the transforming growth factor-beta (TGF-beta) family of cytokines, which can trigger a bewildering diversity of responses, depending on the genetic makeup and environment of the target cell. What are the networks of cell-specific molecules that mould the TGF-beta response to each cell's needs?
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              A rapid micropreparation technique for extraction of DNA-binding proteins from limiting numbers of mammalian cells.

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                Author and article information

                Journal
                J Cell Biol
                The Journal of Cell Biology
                The Rockefeller University Press
                0021-9525
                1540-8140
                2 August 2004
                : 166
                : 3
                : 359-367
                Affiliations
                [1 ]FIRC Institute of Molecular Oncology, University of Milan, 20139 Milan, Italy
                [2 ]Mario Negri Institute for Pharmacological Research, University of Milan, 20139 Milan, Italy
                [3 ]Department of Biomolecular and Biotechnological Sciences, University of Milan, 20139 Milan, Italy
                [4 ]Department of Histology, Microbiology and Medical Biotechnologies, University of Padua, 35100 Padua, Italy
                Author notes

                Address correspondence to Elisabetta Dejana, FIRC Institute of Molecular Oncology, Via Adamello, 16-20139, Milan, Italy. Tel.: 39-02-574303-234. Fax: 39-02-574303-244. email: dejana@ 123456ifom-firc.it

                Article
                200403050
                10.1083/jcb.200403050
                2172268
                15289495
                00fcb1e0-f503-49c5-898f-4c8ef3570296
                Copyright © 2004, The Rockefeller University Press
                History
                : 5 March 2004
                : 29 June 2004
                Categories
                Research Articles
                Article

                Cell biology
                heart cushion formation; β-catenin; endothelial cells; wnt-signaling; transforming growth factor β

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