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Identification of a new gene mutated in Fraser syndrome and mouse myelencephalic blebs

Authors :
Antonio Perez Aytes
Lesley M McGregor
Shalini Jadeja
Susan M. Darling
Adrian S. Woolf
Fiona M. Watt
Mieke M. van Haelst
Jason Hopkins
Georges Chalepakis
Peter J. Scambler
Martin S. Taylor
Ian J. Jackson
Ian M. Smyth
Elizabeth Bentley
Jolanta E. Pitera
Nicole Philip
Human genetics
Amsterdam Neuroscience - Complex Trait Genetics
Amsterdam Reproduction & Development (AR&D)
Source :
Jadeja, S, Smyth, I, Pitera, J E, Taylor, M S, van Haelst, M, Bentley, E, McGregor, L, Hopkins, J, Chalepakis, G, Philip, N, Perez Aytes, A, Watt, F M, Darling, S M, Jackson, I, Woolf, A S & Scambler, P J 2005, ' Identification of a new gene mutated in Fraser syndrome and mouse myelencephalic blebs ', Nature Genetics, vol. 37, no. 5, pp. 520-5 . https://doi.org/10.1038/ng1549, NATURE GENETICS, r-IIS La Fe. Repositorio Institucional de Producción Científica del Instituto de Investigación Sanitaria La Fe, instname, Nature Genetics, 37(5), 520-5. Nature Publishing Group
Publication Year :
2005

Abstract

Fraser syndrome is a recessive, multisystem disorder presenting with cryptophthalmos, syndactyly and renal defects and associated with loss-of-function mutations of the extracellular matrix protein FRAS1. Fras1 mutant mice have a blebbed phenotype characterized by intrauterine epithelial fragility generating serous and, later, hemorrhagic blisters. The myelencephalic blebs (my) strain has a similar phenotype. We mapped my to Frem2, a gene related to Fras1 and Frem1, and showed that a Frem2 gene-trap mutation was allelic to my. Expression of Frem2 in adult kidneys correlated with cyst formation in my homozygotes, indicating that the gene is required for maintaining the differentiated state of renal epithelia. Two individuals with Fraser syndrome were homozygous with respect to the same missense mutation of FREM2, confirming genetic heterogeneity. This is the only missense mutation reported in any blebbing mutant or individual with Fraser syndrome, suggesting that calcium binding in the CALXbeta-cadherin motif is important for normal functioning of FREM2.

Details

Language :
English
ISSN :
10614036
Database :
OpenAIRE
Journal :
Jadeja, S, Smyth, I, Pitera, J E, Taylor, M S, van Haelst, M, Bentley, E, McGregor, L, Hopkins, J, Chalepakis, G, Philip, N, Perez Aytes, A, Watt, F M, Darling, S M, Jackson, I, Woolf, A S & Scambler, P J 2005, ' Identification of a new gene mutated in Fraser syndrome and mouse myelencephalic blebs ', Nature Genetics, vol. 37, no. 5, pp. 520-5 . https://doi.org/10.1038/ng1549, NATURE GENETICS, r-IIS La Fe. Repositorio Institucional de Producción Científica del Instituto de Investigación Sanitaria La Fe, instname, Nature Genetics, 37(5), 520-5. Nature Publishing Group
Accession number :
edsair.doi.dedup.....c2beb7496f2e8d51336196f43246f745
Full Text :
https://doi.org/10.1038/ng1549