Fibrochondrogenesis is a severe, autosomal-recessive, short-limbed skeletal dysplasia. In a single case of fibrochondrogenesis, whole-genome SNP genotyping identified unknown ancestral consanguinity by detecting three autozygous regions. Because of the predominantly skeletal nature of the phenotype, the 389 genes localized to the autozygous intervals were prioritized for mutation analysis by correlation of their expression with known cartilage-selective genes via the UCLA Gene Expression Tool, UGET. The gene encoding the α1 chain of type XI collagen (COL11A1) was the only cartilage-selective gene among the three candidate intervals. Sequence analysis of COL11A1 in two genetically independent fibrochondrogenesis cases demonstrated that each ...
SummarySpondylometaphyseal dysplasia (SMD) comprises a heterogeneous group of heritable skeletal dys...
The collagens are a family of structural proteins which function as an extracellular framework in eu...
Abstract Collagens IX and XI are quantitatively minor components of the collagen fibrils in cartilag...
Fibrochondrogenesis is a severe, autosomal-recessive, short-limbed skeletal dysplasia. In a single c...
Fibrochondrogenesis is a severe, autosomal-recessive, short-limbed skeletal dysplasia. In a single c...
Fibrochondrogenesis is a severe, recessively inherited skeletal dysplasia shown to result from mutat...
Identifying mutations that cause specific osteochondrodysplasias will provide novel insights into th...
AbstractIdentifying mutations that cause specific osteochon-drodysplasias will provide novel insight...
Abstract Collagen XI is a minor component of articular cartilage collagen fibrils together with coll...
Type XI collagen plays a fundamental role in fibrillogenesis, through formation of cartilage collage...
SummaryOtospondylomegaepiphyseal dysplasia (OSMED) is an autosomal recessive skeletal dysplasia acco...
Mice that are homozygous for the autosomal recessive chondrodysplasia (cho) mutation die at birth wi...
Abstract Collagens IX, a non-fibrillar collagen, and XI, a fibrillar collagen, are minor components ...
Otospondylomegaepiphyseal dysplasia (OSMED) is an autosomal recessive skeletal dysplasia accompanied...
AbstractMice that are homozygous for the autosomal recessive chondrodysplasia (cho) mutation die at ...
SummarySpondylometaphyseal dysplasia (SMD) comprises a heterogeneous group of heritable skeletal dys...
The collagens are a family of structural proteins which function as an extracellular framework in eu...
Abstract Collagens IX and XI are quantitatively minor components of the collagen fibrils in cartilag...
Fibrochondrogenesis is a severe, autosomal-recessive, short-limbed skeletal dysplasia. In a single c...
Fibrochondrogenesis is a severe, autosomal-recessive, short-limbed skeletal dysplasia. In a single c...
Fibrochondrogenesis is a severe, recessively inherited skeletal dysplasia shown to result from mutat...
Identifying mutations that cause specific osteochondrodysplasias will provide novel insights into th...
AbstractIdentifying mutations that cause specific osteochon-drodysplasias will provide novel insight...
Abstract Collagen XI is a minor component of articular cartilage collagen fibrils together with coll...
Type XI collagen plays a fundamental role in fibrillogenesis, through formation of cartilage collage...
SummaryOtospondylomegaepiphyseal dysplasia (OSMED) is an autosomal recessive skeletal dysplasia acco...
Mice that are homozygous for the autosomal recessive chondrodysplasia (cho) mutation die at birth wi...
Abstract Collagens IX, a non-fibrillar collagen, and XI, a fibrillar collagen, are minor components ...
Otospondylomegaepiphyseal dysplasia (OSMED) is an autosomal recessive skeletal dysplasia accompanied...
AbstractMice that are homozygous for the autosomal recessive chondrodysplasia (cho) mutation die at ...
SummarySpondylometaphyseal dysplasia (SMD) comprises a heterogeneous group of heritable skeletal dys...
The collagens are a family of structural proteins which function as an extracellular framework in eu...
Abstract Collagens IX and XI are quantitatively minor components of the collagen fibrils in cartilag...