XsFRP5 modulates endodermal organogenesis in Xenopus laevis.
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Summary
It is proposed that XsFRP5 exerts an early regulatory function in the specification of the ventral pancreas, as well as a late function in controlling stomach size via inhibition of Wnt signalling.
- Type
- article
- Published
- 2009-05-15
- Cited by
- 19
- References
- 50
- Access
- Open access
- OpenAlex
- https://openalex.org/W1992481401
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37650565
Keywords
Biology, Wnt signaling pathway, Xenopus, Cell biology, Pancreas
References
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- Formation of multiple hearts in mice following deletion of beta-catenin in the embryonic endoderm.
- Development of the gut in Xenopus laevis
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- Expression of Sox1 during Xenopus early embryogenesis.
- Retinoic acid-mediated patterning of the pre-pancreatic endoderm in Xenopus operates via direct and indirect mechanisms.
- Interaction of Frizzled Related Protein (FRP) with Wnt Ligands and the Frizzled Receptor Suggests Alternative Mechanisms for FRP Inhibition of Wnt Signaling*
- Sfrp1, Sfrp2, and Sfrp5 regulate the Wnt/β‐catenin and the planar cell polarity pathways during early trunk formation in mouse
- From cortical rotation to organizer gene expression: toward a molecular explanation of axis specification in Xenopus
- Expression of the Wnt inhibitor, sFRP5, in the gut endoderm of Xenopus.
- Frizzled/PCP signalling: a conserved mechanism regulating cell polarity and directed motility
- The stomach mesenchymal transcription factor Barx1 specifies gastric epithelial identity through inhibition of transient Wnt signaling.
- Retinoic acid signaling is essential for pancreas development and promotes endocrine at the expense of exocrine cell differentiation in Xenopus.
- Embryonic dorsal-ventral signaling: secreted frizzled-related proteins as inhibitors of tolloid proteinases.
Cited by
- The interplay between the expression and functions of Wnt13 isoforms during apoptosis in bovine aortic endothelial cells
- Role of cellular dynamics, adhesion and polarity in the context of primordial germ cell migration in Xenopus laevis embryos
- Characterization of sFRP2‐like in amphioxus: insights into the evolutionary conservation of Wnt antagonizing function
- Expression of Wnt Signaling Components during Xenopus Pronephros Development
- Appl1 is essential for the survival of Xenopus pancreas, duodenum, and stomach progenitor cells
- Wnt affects symmetry and morphogenesis during post-embryonic development in colonial chordates
- Retinoic Acid-Activated Ndrg1a Represses Wnt/β-catenin Signaling to Allow Xenopus Pancreas, Oesophagus, Stomach, and Duodenum Specification
- Interplay between Wnt2 and Wnt2bb controls multiple steps of early foregut-derived organ development
- PTK7/Otk interacts with Wnts and inhibits canonical Wnt signalling
- The function of PTK7 during Xenopus neural crest migration
- Functional analysis of Prdm14 during Xenopus embryogenesis
- PTK7 protein localization and stability is affected by canonical Wnt ligands
- Analyzing the Function of PTK7 in Cell Migration
- Characterization of the retinoic acid-induced gene network responsible for pancreas specification in Xenopus laevis
- Retinoic acid-induced expression of Hnf1b and Fzd4 is required for pancreas development in Xenopus laevis
- Cutting the Edge of β-Cells – WNT Pathway Thrives Lineage Segregation in Pancreatic Organogenesis
- The secreted BMP antagonist ERFE is required for the development of a functional circulatory system in Xenopus.
- Evolutionary and Structural Assessment of the Human Secreted Frizzled-Related Protein (SFRP) Family
- Wnt Signaling during Early Xenopus Development
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