In 1999, based on a single family, spondyloepimetaphyseal dysplasia (SEMD) with mental retardation (MR) was described as a novel syndrome with probably X-linked recessive inheritance and unknown molecular defect (MIM 300232). Our purpose was to search for the causative defect in the originally described family and in an independently ascertained second family. All patients had slowly progressive neurodegeneration with central and peripheral involvement and identical skeletal dysplasia. Whole exome sequencing performed in two subjects showed a single plausible candidate - the p.Asp237Gly variant in AIFM1 (chr. Xq26.1). The p.Asp237Gly segregated with disease as indicated by linkage analysis [maximum logarithm of odds score (LOD) score at theta 0 for the two families was 3.359]. This variant had not been previously reported and it was predicted to be pathogenic by Polyphen2, SIFT, MutationTaster and Mutation Assessor. AIFM1 encodes mitochondria associated apoptosis-inducing factor. The AIFM1 gene has been linked with COXPD6 encephalomyopathy (MIM 300816), Cowchock syndrome (MIM 310490) and X-linked deafness with neuropathy (DFNX5, MIM 300614), none of which are similar to SEMD-MR. Our results place SEMD as the third instance of a skeletal phenotype associated with a mitochondrial disease (the others being EVEN-PLUS syndrome caused by mutations of HSPA9 and CODAS syndrome due to LONP1 mutations).
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http://dx.doi.org/10.1111/cge.12792 | DOI Listing |
Clin Dysmorphol
December 2024
Department of Pediatric Genetics.
Introduction: Spondyloepimetaphyseal dysplasia with joint laxity type 1 (SEMD-JL1) is an extremely rare skeletal dysplasia belonging to a group of disorders called linkeropathies. It is characterized by skeletal and connective tissue abnormalities. Biallelic variants in genes encoding enzymes that synthesize the tetrasaccharide linker region of glycosaminoglycans lead to linkeropathies, which exhibit clinical and phenotypic features that overlap with each other.
View Article and Find Full Text PDFMol Biol Rep
December 2024
Faculty of Medical Sciences, Mohamed VI Polytechnic University, Benguerir, Morocco.
Background: Dyggve-Melchior-Clausen (DMC) disease is a rare autosomal recessive disorder primarily characterized by spondylo-epimetaphyseal dysplasia, intellectual disability, and distinctive facial features. Patients typically present with severe developmental delays and cognitive impairments, defining features of the syndrome.
Methods And Results: This case report examines a 13-year-old Moroccan child diagnosed with DMC disease, presenting classical skeletal abnormalities, including spondylo-epimetaphyseal dysplasia, as confirmed through exome sequencing.
Bone Res
October 2024
Department of Osteoporosis and Bone Diseases, Shanghai Clinical Research Center of Bone Diseases, Shanghai Jiao Tong University of Medicine Affiliated Sixth People's Hospital, Shanghai, China.
Cellular communication network factor 2 (CCN2) is a secreted extracellular matrix-associated protein, and its aberrantly increased expression has been implicated in a diversity of diseases involving pathological processes of fibrosis, chronic inflammation, or tissue injury, which has promoted the evaluation of CCN2 as therapeutic targets for multiple disorders. However, human phenotypes associated with CCN2 deficiency have remained enigmatic; variants in CCN2 have not yet been associated with a human phenotype. Here, we collected families diagnosed with spondyloepimetaphyseal dysplasia (SEMD), and screened candidate pathogenic genes for families without known genetic causes using next-generation sequencing.
View Article and Find Full Text PDFJ Pediatr Endocrinol Metab
December 2024
Department of Pediatric Endocrinology, Dr. Behçet Uz Training and Research Hospital, University of Health Science, Izmir, Türkiye.
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