Novel OCTN2 mutations: no genotype-phenotype correlations: early carnitine therapy prevents cardiomyopathy
Anne-Marie Lamhonwah1, Simon E Olpin, Rodney J Pollitt
1Department of Pediatrics, The Hospital for Sick Children, University of Toronto, Toronto, Ontario, Canada.
Abstract:
Primary systemic carnitine deficiency or carnitine uptake defect (OMIM 212140) is a potentially lethal, autosomal recessive disorder characterized by progressive infantile-onset cardiomyopathy, weakness, and recurrent hypoglycemic hypoketotic encephalopathy, which is highly responsive to L-carnitine therapy. Molecular analysis of the SLC22A5 (OCTN2) gene, encoding the high-affinity carnitine transporter, was done in 11 affected individuals by direct nucleotide sequencing of polymerase chain reaction products from all 10 exons. Carnitine uptake (at Km of 5 microM) in cultured skin fibroblasts ranged from 1% to 20% of normal controls. Eleven mutations (delF23, N32S, and one 11-bp duplication in exon 1; R169W in exon 3; a donor splice mutation [IVS3+1 G > A] in intron 3; frameshift mutations in exons 5 and 6; Y401X in exon 7; T440M, T468R and S470F in exon 8) are described. There was no correlation between residual uptake and severity of clinical presentation, suggesting that the wide phenotypic variability is likely related to exogenous stressors exacerbating carnitine deficiency. Most importantly, strict compliance with carnitine from birth appears to prevent the phenotype.
Insights
Primary systemic carnitine deficiency, a genetic disorder affecting carnitine uptake, can be prevented with early L-carnitine treatment. This research identifies novel gene mutations and highlights the importance of timely intervention to avoid severe symptoms.
Area of Science:
- Genetics
- Metabolic Disorders
- Molecular Biology
Background:
- Primary systemic carnitine deficiency (OMIM 212140) is a severe, inherited condition impacting carnitine transport.
- It presents with cardiomyopathy, muscle weakness, and encephalopathy, but responds well to L-carnitine supplementation.
Observation:
- This study analyzed the SLC22A5 (OCTN2) gene in 11 individuals with carnitine deficiency.
- Fibroblast carnitine uptake was significantly reduced, ranging from 1% to 20% of normal levels.
- Eleven distinct mutations in the SLC22A5 gene were identified.
Findings:
- The identified mutations included deletions, duplications, splice site mutations, and missense changes.
- No clear correlation was found between the level of residual carnitine uptake and clinical severity.
- Phenotypic variability is likely influenced by external factors that worsen carnitine deficiency.
Implications:
- Early and consistent L-carnitine therapy from birth can effectively prevent the clinical manifestations of this disorder.
- Understanding these mutations aids in genetic counseling and diagnosis.
- Further research into exogenous stressors is warranted to fully explain disease variability.
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