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Beppu, Hideyuki

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Beppu

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Hideyuki

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Beppu, Hideyuki

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  • Publication

    Antagonism Between Smad1 and Smad2 Signaling Determines the Site of Distal Visceral Endoderm Formation in the Mouse Embryo

    (Rockefeller University Press, 2009) Yamamoto, Masamichi; Beppu, Hideyuki; Takaoka, Katsuyoshi; Meno, Chikara; Li, En; Miyazono, Kohei; Hamada, Hiroshi

    The anterior–posterior axis of the mouse embryo is established by formation of distal visceral endoderm (DVE) and its subsequent migration. The precise mechanism of DVE formation has remained unknown, however. Here we show that bone morphogenetic protein (BMP) signaling plays dual roles in DVE formation. BMP signaling is required at an early stage for differentiation of the primitive endoderm into the embryonic visceral endoderm (VE), whereas it inhibits DVE formation, restricting it to the distal region, at a later stage. A Smad2-activating factor such as Activin also contributes to DVE formation by generating a region of VE positive for the Smad2 signal and negative for Smad1 signal. DVE is thus formed at the distal end of the embryo, the only region of VE negative for the Smad1 signal and positive for Smad2 signal. An inverse relation between the level of phosphorylated Smad1 and that of phosphorylated Smad2 in VE suggests an involvement of antagonism between Smad1- and Smad2-mediated signaling.

  • Publication

    Stromal inactivation of BMPRII leads to colorectal epithelial overgrowth and polyp formation

    (Springer Nature, 2007) Beppu, Hideyuki; Mwizerwa, O N; Beppu, Y; Dattwyler, M P; Lauwers, Gregory Y.; Bloch, Kenneth; Goldstein, Allan

    Stromal–epithelial interactions play a central role in development and tumorigenesis. Bone morphogenetic protein (BMP) signaling in the intestine is involved in both of these processes. Inactivation of BMP pathway genes in the epithelium is known to cause intestinal polyposis. However, the role of the intestinal stroma in polyp initiation is incompletely understood. We observed that conditional inactivation of the BMP type II receptor (BMPRII) in the stroma leads to epithelial hyperplasia throughout the colon with increased epithelial cell proliferation. Mutant mice developed rectal bleeding and hamartomatous polyps in the colorectum. The polyps demonstrated increased proliferation of epithelial and mesenchymal cells in the mucosa with an expansion of the myofibroblast cell population. These results demonstrate that genetic mutations altering the BMP signaling pathway in the stromal microenvironment can lead to epithelial tumors in the colon.