Literature DB >> 19853565

Cdx and Hox genes differentially regulate posterior axial growth in mammalian embryos.

Teddy Young1, Jennifer Elizabeth Rowland, Cesca van de Ven, Monika Bialecka, Ana Novoa, Marta Carapuco, Johan van Nes, Wim de Graaff, Isabelle Duluc, Jean-Noël Freund, Felix Beck, Moises Mallo, Jacqueline Deschamps.   

Abstract

Hox and Cdx transcription factors regulate embryonic positional identities. Cdx mutant mice display posterior body truncations of the axial skeleton, neuraxis, and caudal urorectal structures. We show that trunk Hox genes stimulate axial extension, as they can largely rescue these Cdx mutant phenotypes. Conversely, posterior (paralog group 13) Hox genes can prematurely arrest posterior axial growth when precociously expressed. Our data suggest that the transition from trunk to tail Hox gene expression successively regulates the construction and termination of axial structures in the mouse embryo. Thus, Hox genes seem to differentially orchestrate posterior expansion of embryonic tissues during axial morphogenesis as an integral part of their function in specifying head-to-tail identity. In addition, we present evidence that Cdx and Hox transcription factors exert these effects by controlling Wnt signaling. Concomitant regulation of Cyp26a1 expression, restraining retinoic acid signaling away from the posterior growth zone, may likewise play a role in timing the trunk-tail transition.

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Year:  2009        PMID: 19853565     DOI: 10.1016/j.devcel.2009.08.010

Source DB:  PubMed          Journal:  Dev Cell        ISSN: 1534-5807            Impact factor:   12.270


  90 in total

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4.  β-catenin regulates Pax3 and Cdx2 for caudal neural tube closure and elongation.

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Journal:  Development       Date:  2013-11-27       Impact factor: 6.868

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