Mutations in orthologous genes in human spondyloepimetaphyseal dysplasia and the brachymorphic mouse.

Details

Serval ID
serval:BIB_6B9C4F1D4B40
Type
Article: article from journal or magazin.
Collection
Publications
Title
Mutations in orthologous genes in human spondyloepimetaphyseal dysplasia and the brachymorphic mouse.
Journal
Nature Genetics
Author(s)
Faiyaz ul Haque M., King L.M., Krakow D., Cantor R.M., Rusiniak M.E., Swank R.T., Superti-Furga A., Haque S., Abbas H., Ahmad W., Ahmad M., Cohn D.H.
ISSN
1061-4036 (Print)
ISSN-L
1061-4036
Publication state
Published
Issued date
1998
Volume
20
Number
2
Pages
157-162
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't ; Research Support, U.S. Gov't, P.H.S.Publication Status: ppublish
Abstract
The osteochondrodysplasias are a genetically heterogeneous group of disorders affecting skeletal development, linear growth and the maintenance of cartilage and bone. We have studied a large inbred Pakistani family with a distinct form of recessively inherited spondyloepimetaphyseal dysplasia (SEMD) and mapped a gene associated with this dwarfing condition to chromosome 10q23-24, a region syntenic with the locus for the brachymorphic mutation on mouse chromosome 19. We identified two orthologous genes, ATPSK2 and Atpsk2, encoding novel ATP sulfurylase/APS kinase orthologues in the respective regions of the human and mouse genomes. We characterized a nonsense mutation in ATPSK2 in the SEMD family and a missense mutation in the region of Atpsk2 encoding the APS kinase activity in the brachymorphic mouse. ATP sulfurylase/APS kinase catalyses the metabolic activation of inorganic sulfate to PAPS, the universal donor for post-translational protein sulfation in all cell types. The cartilage-specificity of the human and mouse phenotypes provides further evidence of the critical role of sulfate activation in the maturation of cartilage extracellular matrix molecules and the effect of defects in this process on the architecture of cartilage and skeletogenesis.
Keywords
Amino Acid Sequence, Animals, Chromosome Mapping, Chromosomes, Human, Pair 10, Codon, Terminator, Consanguinity, Genetic Linkage, Humans, Mice, Molecular Sequence Data, Mutation, Osteochondrodysplasias/genetics, Pedigree, Phosphotransferases (Alcohol Group Acceptor)/genetics, Protein Processing, Post-Translational, Sequence Alignment
Pubmed
Create date
14/03/2011 17:09
Last modification date
20/08/2019 15:25
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