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Analysis of Wnt8 for neural posteriorizing factor by identifying Frizzled 8c and Frizzled 9 as functional receptors for Wnt8
Authors:Momoi Akihiro  Yoda Hiroki  Steinbeisser Herbert  Fagotto Francois  Kondoh Hisato  Kudo Akira  Driever Wolfgang  Furutani-Seiki Makoto
Institution:1. Abteilung für Entwicklungsbiologie, Institut für Biologie I, Universität Freiburg, D-79104 Freiburg, Germany;2. Department of Biological Information, Tokyo Institute of Technology, Yokohama 226-8501, Japan;3. Graduate School of Frontier Biosciences, Osaka University, Osaka 565-0871, Japan;4. Abteilung V, Max-Plank-Institut für Entwicklungsbiologie, D-72076 Tübingen, Germany;5. ERATO, Kondoh Differentiation Signaling Project, Japan Science and Technology Corporation, Kyoto, Japan;6. PRESTO, Japan Science and Technology Corporation, Kyoto, Japan
Abstract:The dorsal ectoderm of vertebrate gastrula is first specified into anterior fate by an activation signal and posteriorized by a graded transforming signal, leading to the formation of forebrain, midbrain, hindbrain and spinal cord along the anteroposterior (A-P) axis. Transplanted non-axial mesoderm rather than axial mesoderm has an ability to transform prospective anterior neural tissue into more posterior fates in zebrafish. Wnt8 is a secreted factor that is expressed in non-axial mesoderm. To investigate whether Wnt8 is the neural posteriorizing factor that acts upon neuroectoderm, we first assigned Frizzled 8c and Frizzled 9 to be functional receptors for Wnt8. We then, transplanted non-axial mesoderm into the embryos in which Wnt8 signaling is cell-autonomously blocked by the dominant-negative form of Wnt8 receptors. Non-axial mesodermal transplants in embryos in which Wnt8 signaling is cell-autonomously blocked induced the posterior neural markers as efficiently as in wild-type embryos, suggesting that Wnt8 signaling is not required in neuroectoderm for posteriorization by non-axial mesoderm. Furthermore, Wnt8 signaling, detected by nuclear localization of beta-catenin, was not activated in the posterior neuroectoderm but confined in marginal non-axial mesoderm. Finally, ubiquitous over-expression of Wnt8 does not expand neural ectoderm of posterior character in the absence of mesoderm or Nodal-dependent co-factors. We thus conclude that other factors from non-axial mesoderm may be required for patterning neuroectoderm along the A-P axis.
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