Key result
A homozygous splice mutation in TRAPPC11 (c.1893+3A>G) was identified in four patients with a triple A-like phenotype, leading to incomplete exon skipping and delayed Golgi trafficking.
Observational (n=4)
A novel homozygous splice mutation in TRAPPC11 expands the known myopathy phenotype to include achalasia, alacrima, and neurological symptoms.
Supports TRAPPC11 testing in triple A-like cases; extends myopathy spectrum but remains hypothesis-generating.
Background Triple A syndrome (MIM #231550) is associated with mutations in the AAAS gene. However, about 30% of patients with triple A syndrome symptoms but an unresolved diagnosis do not harbour mutations in AAAS. Objective Search for novel genetic defects in families with a triple A-like phenotype in whom AAAS mutations are not detected. Methods Genome-wide linkage analysis, whole-exome sequencing and functional analyses were used to discover and verify a novel genetic defect in two families with achalasia, alacrima, myopathy and further symptoms. Effect and pathogenicity of the mutation were verified by cell biological studies. Results We identified a homozygous splice mutation in TRAPPC11 (c.1893+3A>G, [NM_021942.5], g.4:184,607,904A>G [hg19]) in four patients from two unrelated families leading to incomplete exon skipping and reduction in full-length mRNA levels. TRAPPC11 encodes for trafficking protein particle complex subunit 11 (TRAPPC11), a protein of the transport protein particle (TRAPP) complex. Western blot analysis revealed a dramatic decrease in full-length TRAPPC11 protein levels and hypoglycosylation of LAMP1. Trafficking experiments in patient fibroblasts revealed a delayed arrival of marker proteins in the Golgi and a delay in their release from the Golgi to the plasma membrane. Mutations in TRAPPC11 have previously been described to cause limb-girdle muscular dystrophy type 2S (MIM #615356). Indeed, muscle histology of our patients also revealed mild dystrophic changes. Immunohistochemically, β-sarcoglycan was absent from focal patches. Conclusions The identified novel TRAPPC11 mutation represents an expansion of the myopathy phenotype described before and is characterised particularly by achalasia, alacrima, neurological and muscular phenotypes.
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Koehler et al. (2016) conducted an observational in Triple A-like phenotype (n=4). TRAPPC11 mutation (c.1893+3A>G) was evaluated on Identification of genetic defect and functional consequences. A homozygous splice mutation in TRAPPC11 (c.1893+3A>G) was identified in four patients with a triple A-like phenotype, leading to incomplete exon skipping and delayed Golgi trafficking.
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