Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5506693 | Biochemical and Biophysical Research Communications | 2016 | 6 Pages |
Abstract
Alpha-dystroglycanopathies are a heterogenic group of human rare diseases that have in common defects of α-dystroglycan O-glycosylation. These congenital disorders share common features as muscular dystrophy, malformations on central nervous system and more rarely altered ocular development, as well as mutations on a set of candidate genes involved on those syndromes. Severity of the syndromes is variable, appearing Walker-Warburg as the most severe where mutations at protein O-mannosyl transferases POMT1 and POMT2 genes are frequently described. When studying the lack of MmPomt1 in mouse embryonic development, as a murine model of Walker-Warburg syndrome, MmPomt1 null phenotype was lethal because Reitchert's membrane fails during embryonic development. Here, we report gene expression from Gallus gallus orthologous genes to human candidates on alpha-dystroglycanopathies POMT1, POMT2, POMGnT1, FKTN, FKRP and LARGE, making special emphasis in expression and localization of GgPomt1. Results obtained by quantitative RT-PCR, western-blot and immunochemistry revealed close gene expression patterns among human and chicken at key tissues affected during development when suffering an alpha-dystroglycanopathy, leading us to stand chicken as a useful animal model for molecular characterization of glycosyltransferases involved in the O-glycosylation of α-Dystroglycan and its role in embryonic development.
Keywords
ORFWWSPOMT1RT-PCRFCMDDystroglycanopathiesDGCLGMDOMIMCMDMEBCongenital muscular dystrophyLimb-girdle muscular dystrophyDystroglycanWalker-Warburg syndromemuscle-eye-brain diseaseopen reading frameChickenMus musculusHomo sapiensGallus gallusreverse transcription-polymerase chain reactionOnline Mendelian Inheritance in Man
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Authors
Adriana Izquierdo-Lahuerta, Oscar de Luis, Francisco Gómez-Esquer, Jesús Cruces, Antonio Coloma,