A homozygous founder mutation in <i>TRAPPC6B</i> associates with a neurodevelopmental disorder characterised by microcephaly, epilepsy and autistic features.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 28626029.
- Also identified by DOI 10.1136/jmedgenet-2017-104627 and PMC identifier 6056005.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
Transport protein particle (TRAPP) is a multisubunit complex that regulates membrane trafficking through the Golgi apparatus. The clinical phenotype associated with mutations in various TRAPP subunits has allowed elucidation of their functions in specific tissues. The role of some subunits in human disease, however, has not been fully established, and their functions remain uncertain. We aimed to expand the range of neurodevelopmental disorders associated with mutations in TRAPP subunits by exome sequencing of consanguineous families. Linkage and homozygosity mapping and candidate gene analysis were used to identify homozygous mutations in families. Patient fibroblasts were used to study splicing defect and zebrafish to model the disease. We identified six individuals from three unrelated families with a founder homozygous splice mutation in <i>TRAPPC6B</i>, encoding a core subunit of the complex TRAPP I. Patients manifested a neurodevelopmental disorder characterised by microcephaly, epilepsy and autistic features, and showed splicing defect. Zebrafish <i>trappc6b</i> morphants replicated the human phenotype, displaying decreased head size and neuronal hyperexcitability, leading to a lower seizure threshold. This study provides clinical and functional evidence of the role of <i>TRAPPC6B</i> in brain development and function.
Medical subject headings
- Autistic Disorder
- Epilepsy
- Founder Effect
- Genetic Association Studies
- Microcephaly
- Mutation
- Neurodevelopmental Disorders
- Vesicular Transport Proteins