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  The mouse homeobox gene Not is required for caudal notochord development and affected by the truncate mutation

Ben Abdelkhalek, H., Beckers, A., Schuster-Gossler, K., Pavlova, M. N., Burkhardt, H., Lickert, H., et al. (2004). The mouse homeobox gene Not is required for caudal notochord development and affected by the truncate mutation. Genes and Development, 18(14): doi:10.1101/gad.303504, pp. 1725-1736. Retrieved from http://genesdev.cshlp.org/content/18/14/1725.full.

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Ben Abdelkhalek, H., Autor
Beckers, A., Autor
Schuster-Gossler, K., Autor
Pavlova, M. N., Autor
Burkhardt, H., Autor
Lickert, H., Autor
Rossant, J., Autor
Reinhardt, R.1, Autor
Schalkwyk, L. C.1, Autor
Mueller, I.1, Autor
Herrmann, B. G.1, Autor
Ceolin, M.2, Autor           
Rivera-Pomar, R.3, Autor           
Gossler, A., Autor
Affiliations:
1Max Planck Society, ou_persistent13              
2Department of Molecular Biology, MPI for biophysical chemistry, Max Planck Society, ou_578628              
3Department of Cellular Biochemistry, MPI for biophysical chemistry, Max Planck Society, ou_578576              

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Schlagwörter: Notochord development; Not gene; homeodomain protein
 Zusammenfassung: The floating head (flh) gene in zebrafish encodes a homeodomain protein, which is essential for notochord formation along the entire body axis. flh orthologs, termed Not genes, have been isolated from chick and Xenopus, but no mammalian ortholog has yet been identified. Truncate (tc) is an autosomal recessive mutation in mouse that specifically disrupts the development of the caudal notochord. Here, we demonstrate that truncate arose by a mutation in the mouse Not gene. The truncate allele (Nottc) contains a point mutation in the homeobox of Not that changes a conserved Phenylalanine residue in helix 1 to a Cysteine (F20C), and significantly destabilizes the homeodomain. Reversion of F20C in one allele of homozygous tc embryonic stem (ES) cells is sufficient to restore normal notochord formation in completely ES cell-derived embryos. We have generated a targeted mutation of Not by replacing most of the Not coding sequence, including the homeobox with the eGFP gene. The phenotype of NoteGFP/eGFP, NoteGFP/tc, and Nottc/tc embryos is very similar but slightly more severe in NoteGFP/eGFP than in Nottc/tc embryos. This confirms allelism of truncate and Not, and indicates that tc is not a complete null allele. Not expression is abolished in Foxa2 and T mutant embryos, suggesting that Not acts downstream of both genes during notochord development. This is in contrast to zebrafish embryos, in which flh interacts with ntl (zebrafish T) in a regulatory loop and is essential for development of the entire notochord, and suggests that different genetic control circuits act in different vertebrate species during notochord formation.

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Sprache(n): eng - English
 Datum: 2004-08-192004-08
 Publikationsstatus: Erschienen
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 Identifikatoren: eDoc: 194934
URI: http://genesdev.cshlp.org/content/18/14/1725.full
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Titel: Genes and Development
Genre der Quelle: Zeitschrift
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Seiten: - Band / Heft: 18 (14) Artikelnummer: doi:10.1101/gad.303504 Start- / Endseite: 1725 - 1736 Identifikator: -