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Heparan sulfate Ndst1 gene function variably regulates multiple signaling pathways during mouse development
Authors:Srinivas R. Pallerla  Yi Pan  Xin Zhang  Jeffrey D. Esko  Kay Grobe
Affiliation:1. Institut für Allgemeine Zoologie und Genetik, Westf?lische Wilhelms‐Universit?t Münster, Münster, Germany;2. Department of Medical and Molecular Genetics, Indiana University of Medicine, Indianapolis, Indiana;3. Department of Cellular and Molecular Medicine, University of California San Diego, La Jolla, California
Abstract:Disruption of heparan sulfate (HS) synthesis in vertebrate development causes malformations that are composites of those caused by mutations of multiple HS binding growth factors and morphogens. We previously reported severe developmental defects of the forebrain and the skull in mutant mice bearing a targeted disruption of the heparan sulfate‐generating enzyme GlcNAc N‐deacetylase/GlcN N‐sulfotransferase 1 (Ndst1). Here, we further characterize the molecular mechanisms leading to frontonasal dysplasia in Ndst1 mutant embryos and describe additional malformations, including impaired spinal and cranial neural tube fusion and skeletal abnormalities. Of the numerous proteins that bind HS, we show that impaired fibroblast growth factor, Hedgehog, and Wnt function may contribute to some of these phenotypes. Our findings, therefore, suggest that defects in HS synthesis may contribute to multifactor types of congenital developmental defects in humans, including neural tube defects. Developmental Dynamics 236:556–563, 2007. © 2006 Wiley‐Liss, Inc.
Keywords:heparan sulfate  Ndst  hedgehog  Fgf  Wnt
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