Literature DB >> 19395637

Stem cells, signals and vertebrate body axis extension.

Valerie Wilson1, Isabel Olivera-Martinez, Kate G Storey.   

Abstract

The progressive generation of chick and mouse axial tissues - the spinal cord, skeleton and musculature of the body - has long been proposed to depend on the activity of multipotent stem cells. Here, we evaluate evidence for the existence and multipotency of axial stem cells. We show that although the data strongly support their existence, there is little definitive information about their multipotency or extent of contribution to the axis. We also review the location and molecular characteristics of these putative stem cells, along with their evolutionary conservation in vertebrates and the signalling mechanisms that regulate and arrest axis extension.

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Year:  2009        PMID: 19395637     DOI: 10.1242/dev.021246

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  108 in total

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Authors:  Alvise Schiavinato; Ann-Kathrin A Becker; Miriam Zanetti; Diana Corallo; Martina Milanetto; Dario Bizzotto; Giorgio Bressan; Marija Guljelmovic; Mats Paulsson; Raimund Wagener; Paola Braghetta; Paolo Bonaldo
Journal:  J Biol Chem       Date:  2012-02-10       Impact factor: 5.157

2.  The zebrafish tailbud contains two independent populations of midline progenitor cells that maintain long-term germ layer plasticity and differentiate in response to local signaling cues.

Authors:  Richard H Row; Steve R Tsotras; Hana Goto; Benjamin L Martin
Journal:  Development       Date:  2015-12-16       Impact factor: 6.868

3.  Retinoic acid orchestrates fibroblast growth factor signalling to drive embryonic stem cell differentiation.

Authors:  Marios P Stavridis; Barry J Collins; Kate G Storey
Journal:  Development       Date:  2010-03       Impact factor: 6.868

4.  Germ layer differentiation during early hindgut and cloaca formation in rabbit and pig embryos.

Authors:  Romia Hassoun; Peter Schwartz; Detlef Rath; Christoph Viebahn; Jörg Männer
Journal:  J Anat       Date:  2010-09-28       Impact factor: 2.610

Review 5.  FGF signalling: diverse roles during early vertebrate embryogenesis.

Authors:  Karel Dorey; Enrique Amaya
Journal:  Development       Date:  2010-11       Impact factor: 6.868

6.  An emerging molecular mechanism for the neural vs mesodermal cell fate decision.

Authors:  Roman A Li; Kate G Storey
Journal:  Cell Res       Date:  2011-03-29       Impact factor: 25.617

7.  Lef1-dependent Wnt/β-catenin signalling drives the proliferative engine that maintains tissue homeostasis during lateral line development.

Authors:  Leonardo E Valdivia; Rodrigo M Young; Thomas A Hawkins; Heather L Stickney; Florencia Cavodeassi; Quenten Schwarz; Lisa M Pullin; Rosario Villegas; Enrico Moro; Francesco Argenton; Miguel L Allende; Stephen W Wilson
Journal:  Development       Date:  2011-09       Impact factor: 6.868

8.  Organization of Embryonic Morphogenesis via Mechanical Information.

Authors:  Dipjyoti Das; Dörthe Jülich; Jamie Schwendinger-Schreck; Emilie Guillon; Andrew K Lawton; Nicolas Dray; Thierry Emonet; Corey S O'Hern; Mark D Shattuck; Scott A Holley
Journal:  Dev Cell       Date:  2019-06-06       Impact factor: 12.270

9.  Combinatorial analysis of developmental cues efficiently converts human pluripotent stem cells into multiple neuronal subtypes.

Authors:  Yves Maury; Julien Côme; Rebecca A Piskorowski; Nouzha Salah-Mohellibi; Vivien Chevaleyre; Marc Peschanski; Cécile Martinat; Stéphane Nedelec
Journal:  Nat Biotechnol       Date:  2014-11-10       Impact factor: 54.908

10.  An epiblast stem cell-derived multipotent progenitor population for axial extension.

Authors:  Shlomit Edri; Penny Hayward; Peter Baillie-Johnson; Benjamin J Steventon; Alfonso Martinez Arias
Journal:  Development       Date:  2019-05-20       Impact factor: 6.868

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