Literature DB >> 25240982

m.8993T>G-Associated Leigh Syndrome with Hypocitrullinemia on Newborn Screening.

Mari Mori1, John R Mytinger, Lisa C Martin, Dennis Bartholomew, Scott Hickey.   

Abstract

Citrulline is among the metabolites measured by expanded newborn screening (NBS). While hypocitrullinemia can be a marker for deficiency of proximal urea cycle enzymes such as ornithine transcarbamylase (OTC), only a handful of state newborn screening programs in the United States officially report a low citrulline value for further work-up due to low positive predictive value. We report a case of a male infant who was found to have hypocitrullinemia on NBS. After excluding proximal urea cycle disorders by DNA sequencing, his NBS result was felt to be a false positive. At 4 months of age, he developed poor feeding, failure to thrive, apnea and infantile spasms with a progression to intractable seizures, as well as persistent hypocitrullinemia. He was diagnosed with Leigh syndrome due to a maternally inherited homoplasmic m.8993T>G mutation in the ATPase 6 gene. His mother, who had previously been diagnosed with cerebral palsy, was concurrently diagnosed with neuropathy, ataxia, and retinitis pigmentosa (NARP) due to heteroplasmy of the same mutation. She had progressive muscle weakness, ataxia, and speech dyspraxia. The m.8993T>G mutation causes mitochondrial ATP synthase deficiency and it is hypothesized to undermine the synthesis of citrulline by CPS1. In addition to proximal urea cycle disorders, the evaluation of an infant with persistent hypocitrullinemia should include testing for the m.8993T>G mutation and other disorders that cause mitochondrial dysfunction.

Entities:  

Year:  2014        PMID: 25240982      PMCID: PMC4241199          DOI: 10.1007/8904_2014_332

Source DB:  PubMed          Journal:  JIMD Rep        ISSN: 2192-8304


  19 in total

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3.  Low citrulline in Leigh disease: still a biomarker of maternally inherited Leigh syndrome.

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5.  Mitochondrial DNA 8993T>G mutation in a child with ornithine transcarbamylase deficiency and leigh syndrome: an unexpected association.

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6.  Pearson syndrome: altered tricarboxylic acid and urea-cycle metabolites, adrenal insufficiency and corneal opacities.

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7.  EPI-743 reverses the progression of the pediatric mitochondrial disease--genetically defined Leigh Syndrome.

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8.  Clinical and biochemical characteristics in patients with a high mutant load of the mitochondrial T8993G/C mutations.

Authors:  Eva Morava; Richard J Rodenburg; Frans Hol; Maaike de Vries; Antoon Janssen; Lambert van den Heuvel; Leo Nijtmans; Jan Smeitink
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9.  Inherited disorders affecting mitochondrial function are associated with glutathione deficiency and hypocitrullinemia.

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10.  Newborn screening: toward a uniform screening panel and system.

Authors: 
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2.  Leigh-Like Syndrome Due to Homoplasmic m.8993T>G Variant with Hypocitrullinemia and Unusual Biochemical Features Suggestive of Multiple Carboxylase Deficiency (MCD).

Authors:  Shanti Balasubramaniam; B Lewis; D M Mock; H M Said; M Tarailo-Graovac; A Mattman; C D van Karnebeek; D R Thorburn; R J Rodenburg; J Christodoulou
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4.  Prospective diagnosis of MT-ATP6-related mitochondrial disease by newborn screening.

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