Literature DB >> 16423343

The mouse Ovol2 gene is required for cranial neural tube development.

Douglas R Mackay1, Ming Hu, Baoan Li, Catherine Rhéaume, Xing Dai.   

Abstract

The Ovo gene family encodes a group of evolutionarily conserved transcription factors and includes members that reside downstream of key developmental signaling pathways such as Wg/Wnt and BMP/TGF-beta. In the current study, we explore the function of Ovol2, one of three Ovo paralogues in mice. We report that Ovol2 is expressed during early-mid embryogenesis, particularly in the inner cell mass at E3.5, in epiblast at E6.5, and at later stages in ectodermally derived tissues such as the rostral surface (epidermal) ectoderm. Embryos in which Ovol2 is ablated exhibit lethality by E10.5, prior to which they display severe defects including an open cranial neural tube. The neural defects are associated with improper Shh expression in the underlying rostral axial mesoderm and localized changes of neural marker expression along the dorsoventral axis, as well as with expanded cranial neural tissue and reduced cranial surface ectoderm culminating in a lateral shift of the neuroectoderm/surface ectoderm border. We propose that these defects reflect the involvement of Ovol2 in independent processes such as regionalized gene expression and neural/non-neural ectodermal patterning. Additionally, we present evidence that Ovol2 is required for efficient migration and survival of neural crest cells that arise at the neuroectoderm/surface ectoderm border, but not for their initial formation. Collectively, our studies indicate that Ovol2 is a key regulator of neural development and reveal a previously unexplored role for Ovo genes in mammalian embryogenesis.

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Year:  2006        PMID: 16423343      PMCID: PMC2891516          DOI: 10.1016/j.ydbio.2005.12.003

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  73 in total

1.  Inhibitory patterning of the anterior neural plate in Xenopus by homeodomain factors Dlx3 and Msx1.

Authors:  J A Feledy; M J Beanan; J J Sandoval; J S Goodrich; J H Lim; M Matsuo-Takasaki; S M Sato; T D Sargent
Journal:  Dev Biol       Date:  1999-08-15       Impact factor: 3.582

2.  Regulation of early expression of Dlx3, a Xenopus anti-neural factor, by beta-catenin signaling.

Authors:  M J Beanan; J A Feledy; T D Sargent
Journal:  Mech Dev       Date:  2000-03-01       Impact factor: 1.882

3.  Influences of ectoderm and endoderm on heart differentiation in the newt.

Authors:  A G JACOBSON
Journal:  Dev Biol       Date:  1960-04       Impact factor: 3.582

Review 4.  Cardiac neural crest.

Authors:  Jason Z Stoller; Jonathan A Epstein
Journal:  Semin Cell Dev Biol       Date:  2005-07-27       Impact factor: 7.727

5.  Ovol1 regulates meiotic pachytene progression during spermatogenesis by repressing Id2 expression.

Authors:  Baoan Li; Mahalakshmi Nair; Douglas R Mackay; Virginia Bilanchone; Ming Hu; Magid Fallahi; Hanqiu Song; Qian Dai; Paula E Cohen; Xing Dai
Journal:  Development       Date:  2005-02-16       Impact factor: 6.868

Review 6.  Specification of neural crest cell formation and migration in mouse embryos.

Authors:  Paul A Trainor
Journal:  Semin Cell Dev Biol       Date:  2005-07-25       Impact factor: 7.727

7.  Cre-mediated gene inactivation demonstrates that FGF8 is required for cell survival and patterning of the first branchial arch.

Authors:  A Trumpp; M J Depew; J L Rubenstein; J M Bishop; G R Martin
Journal:  Genes Dev       Date:  1999-12-01       Impact factor: 11.361

8.  Characterization of seven genes affecting Caenorhabditis elegans hindgut development.

Authors:  H M Chamberlin; K B Brown; P W Sternberg; J H Thomas
Journal:  Genetics       Date:  1999-10       Impact factor: 4.562

9.  BMP signaling is essential for development of skeletogenic and neurogenic cranial neural crest.

Authors:  B Kanzler; R K Foreman; P A Labosky; M Mallo
Journal:  Development       Date:  2000-03       Impact factor: 6.868

10.  The morphogenetic role of midline mesendoderm and ectoderm in the development of the forebrain and the midbrain of the mouse embryo.

Authors:  A Camus; B P Davidson; S Billiards; P Khoo; J A Rivera-Pérez; M Wakamiya; R R Behringer; P P Tam
Journal:  Development       Date:  2000-05       Impact factor: 6.868

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  34 in total

1.  Ovo1 links Wnt signaling with N-cadherin localization during neural crest migration.

Authors:  Sarah Piloto; Thomas F Schilling
Journal:  Development       Date:  2010-05-12       Impact factor: 6.868

2.  Ovol2 suppresses cell cycling and terminal differentiation of keratinocytes by directly repressing c-Myc and Notch1.

Authors:  Julie Wells; Briana Lee; Anna Qianyao Cai; Adrine Karapetyan; Wan-Ju Lee; Elizabeth Rugg; Satrajit Sinha; Qing Nie; Xing Dai
Journal:  J Biol Chem       Date:  2009-08-21       Impact factor: 5.157

3.  OVOL2 is a critical regulator of ER71/ETV2 in generating FLK1+, hematopoietic, and endothelial cells from embryonic stem cells.

Authors:  Ju Young Kim; Ra Ham Lee; Tae Min Kim; Dong-Wook Kim; Young-Joo Jeon; Sung-Ho Huh; Se-Yeong Oh; Michael Kyba; Hiroshi Kataoka; Kyunghee Choi; David M Ornitz; Jung-Il Chae; Changwon Park
Journal:  Blood       Date:  2014-09-29       Impact factor: 22.113

4.  An Ovol2-Zeb1 transcriptional circuit regulates epithelial directional migration and proliferation.

Authors:  Daniel Haensel; Peng Sun; Adam L MacLean; Xianghui Ma; Yuan Zhou; Marc P Stemmler; Simone Brabletz; Geert Berx; Maksim V Plikus; Qing Nie; Thomas Brabletz; Xing Dai
Journal:  EMBO Rep       Date:  2018-11-09       Impact factor: 8.807

5.  The zinc finger transcription factor Ovol2 acts downstream of the bone morphogenetic protein pathway to regulate the cell fate decision between neuroectoderm and mesendoderm.

Authors:  Ting Zhang; Qingqing Zhu; Zhihui Xie; Yongfeng Chen; Yunbo Qiao; Lingyu Li; Naihe Jing
Journal:  J Biol Chem       Date:  2013-01-14       Impact factor: 5.157

6.  Transcriptome profiling of genes involved in neural tube closure during human embryonic development using long serial analysis of gene expression (long-SAGE).

Authors:  Deidre R Krupp; Pu-Ting Xu; Sophie Thomas; Andrew Dellinger; Heather C Etchevers; Michel Vekemans; John R Gilbert; Marcy C Speer; Allison E Ashley-Koch; Simon G Gregory
Journal:  Birth Defects Res A Clin Mol Teratol       Date:  2012-07-18

7.  Strain-dependent perinatal lethality of Ovol1-deficient mice and identification of Ovol2 as a downstream target of Ovol1 in skin epidermis.

Authors:  Andy Teng; Mahalakshmi Nair; Julie Wells; Julia A Segre; Xing Dai
Journal:  Biochim Biophys Acta       Date:  2006-09-12

8.  A Grainyhead-Like 2/Ovo-Like 2 Pathway Regulates Renal Epithelial Barrier Function and Lumen Expansion.

Authors:  Annekatrin Aue; Christian Hinze; Katharina Walentin; Janett Ruffert; Yesim Yurtdas; Max Werth; Wei Chen; Anja Rabien; Ergin Kilic; Jörg-Dieter Schulzke; Michael Schumann; Kai M Schmidt-Ott
Journal:  J Am Soc Nephrol       Date:  2015-03-18       Impact factor: 10.121

9.  Specification of functional cranial placode derivatives from human pluripotent stem cells.

Authors:  Zehra Dincer; Jinghua Piao; Lei Niu; Yosif Ganat; Sonja Kriks; Bastian Zimmer; Song-Hai Shi; Viviane Tabar; Lorenz Studer
Journal:  Cell Rep       Date:  2013-11-27       Impact factor: 9.423

10.  Pygo2 expands mammary progenitor cells by facilitating histone H3 K4 methylation.

Authors:  Bingnan Gu; Peng Sun; Yuanyang Yuan; Ricardo C Moraes; Aihua Li; Andy Teng; Anshu Agrawal; Catherine Rhéaume; Virginia Bilanchone; Jacqueline M Veltmaat; Ken-Ichi Takemaru; Sarah Millar; Eva Y-H P Lee; Michael T Lewis; Boan Li; Xing Dai
Journal:  J Cell Biol       Date:  2009-06-01       Impact factor: 10.539

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