Literature DB >> 10391213

Regulation of anterior/posterior patterning of the axial skeleton by growth/differentiation factor 11.

A C McPherron1, A M Lawler, S J Lee.   

Abstract

The bones that comprise the axial skeleton have distinct morphological features characteristic of their positions along the anterior/posterior axis. We previously described a novel TGF-beta family member, myostatin (encoded by the gene Mstn, formerly Gdf8), that has an essential role in regulating skeletal muscle mass. We also identified a gene related to Mstn by low-stringency screening. While the work described here was being completed, the cloning of this gene, designated Gdf11 (also called Bmp11), was also reported by other groups. Here we show that Gdf11, a new transforming growth factor beta(TGFbeta) superfamily member, has an important role in establishing this skeletal pattern. During early mouse embryogenesis, Gdf11 is expressed in the primitive streak and tail bud regions, which are sites where new mesodermal cells are generated. Homozygous mutant mice carrying a targeted deletion of Gdf11 exhibit anteriorly directed homeotic transformations throughout the axial skeleton and posterior displacement of the hindlimbs. The effect of the mutation is dose dependent, as Gdf11+/- mice have a milder phenotype than Gdf11-/- mice. Mutant embryos show alterations in patterns of Hox gene expression, suggesting that Gdf11 acts upstream of the Hox genes. Our findings suggest that Gdf11 is a secreted signal that acts globally to specify positional identity along the anterior/posterior axis.

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Year:  1999        PMID: 10391213     DOI: 10.1038/10320

Source DB:  PubMed          Journal:  Nat Genet        ISSN: 1061-4036            Impact factor:   38.330


  152 in total

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Journal:  Dev Genes Evol       Date:  2010-08-07       Impact factor: 0.900

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5.  GDF11 induces kidney fibrosis, renal cell epithelial-to-mesenchymal transition, and kidney dysfunction and failure.

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6.  Regulation of muscle growth by multiple ligands signaling through activin type II receptors.

Authors:  Se-Jin Lee; Lori A Reed; Monique V Davies; Stefan Girgenrath; Mary E P Goad; Kathy N Tomkinson; Jill F Wright; Christopher Barker; Gregory Ehrmantraut; James Holmstrom; Betty Trowell; Barry Gertz; Man-Shiow Jiang; Suzanne M Sebald; Martin Matzuk; En Li; Li-Fang Liang; Edwin Quattlebaum; Ronald L Stotish; Neil M Wolfman
Journal:  Proc Natl Acad Sci U S A       Date:  2005-12-05       Impact factor: 11.205

7.  Co-culture of canine mesenchymal stem cells with primary bone-derived osteoblasts promotes osteogenic differentiation.

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8.  Transgenic over-expression of growth differentiation factor 11 propeptide in skeleton results in transformation of the seventh cervical vertebra into a thoracic vertebra.

Authors:  Zicong Li; Miyuri Kawasumi; Baoping Zhao; Stefan Moisyadi; Jinzeng Yang
Journal:  Mol Reprod Dev       Date:  2010-11       Impact factor: 2.609

Review 9.  The bone morphogenetic protein 1/Tolloid-like metalloproteinases.

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Journal:  Matrix Biol       Date:  2007-05-18       Impact factor: 11.583

10.  Myostatin signals through a transforming growth factor beta-like signaling pathway to block adipogenesis.

Authors:  A Rebbapragada; H Benchabane; J L Wrana; A J Celeste; L Attisano
Journal:  Mol Cell Biol       Date:  2003-10       Impact factor: 4.272

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