Skeletal Dysplasia_Fetal
Gene: SLC26A2
Well established gene disease association causing skeletal abnormalities of varying severity.Created: 6 Jan 2022, 4:07 p.m.
Phenotypes
Achondrogenesis 1B, MIM#600972; Atelosteogenesis, type II, MIM#256050; Diastrophic dysplasia, MIM#222600; Epiphyseal dysplasia, multiple, 4, MIM#226900
Publications
Gene-disease association is well-established (OMIM, PMID:11241838) but I can find no evidence that it plays a direct role in glycosylation.
SLC26A2 encodes a membrane glycoprotein which functions as a sulfate transporter.
From GeneReviews: "Three autosomal recessive disorders, diastrophic dystrophy (DTD), atelosteogenesis type II (AOII), and achondrogenesis type IB (ACG-IB), all result from defective cartilage proteoglycan sulfation...All of these disorders result from different mutations in the DTD gene (SLC26A2), which encodes a plasma membrane sulfate transporter...the heavy demand for sulfate in bone and cartilage proteoglycan synthesis probably explains why the symptoms are most evident in these locations." (https://www.ncbi.nlm.nih.gov/books/NBK453041/)
SLC26A2 is on the Invitae and Mayo Clinic CDG panels. It is listed as a CDG gene on https://glycosmos.org/gdgdbs/indexCreated: 22 Jul 2020, 11 a.m.
Mode of inheritance
BIALLELIC, autosomal or pseudoautosomal
Phenotypes
Skeletal dysplasia (various)
Publications
Variants in this GENE are reported as part of current diagnostic practice
Hydrops can be a presenting feature of this skeletal dysplasia, one case report found.
Sources: Expert listCreated: 30 Dec 2019, 1:35 p.m.
Mode of inheritance
BIALLELIC, autosomal or pseudoautosomal
Phenotypes
Achondrogenesis Ib, MIM# 600972
Publications
gene: SLC26A2 was added gene: SLC26A2 was added to Skeletal dysplasia Fetal_MelbourneGenomics_VCGS. Sources: Melbourne Genomics Health Alliance Perinatal Autopsy Flagship,Expert Review Green,Victorian Clinical Genetics Services Mode of inheritance for gene: SLC26A2 was set to Unknown