Your browser doesn't support javascript.
loading
Severe neonatal onset neuroregression with paroxysmal dystonia and apnoea: Expanding the phenotypic and genotypic spectrum of CARS2-related mitochondrial disease.
Poquérusse, Jessie; Nolan, Melinda; Thorburn, David R; Van Hove, Johan L K; Friederich, Marisa W; Love, Donald R; Taylor, Juliet; Powell, Christopher A; Minczuk, Michal; Snell, Russell G; Lehnert, Klaus; Glamuzina, Emma; Jacobsen, Jessie C.
Affiliation
  • Poquérusse J; School of Biological Sciences The University of Auckland Auckland New Zealand.
  • Nolan M; Centre for Brain Research The University of Auckland Auckland New Zealand.
  • Thorburn DR; Department of Neurology Starship Children's Health Auckland New Zealand.
  • Van Hove JLK; Murdoch Children's Research Institute Melbourne Victoria Australia.
  • Friederich MW; Department of Paediatrics The University of Melbourne Melbourne Victoria Australia.
  • Love DR; Department of Pediatrics, School of Medicine University of Colorado Anschutz Medical Campus Aurora Colorado USA.
  • Taylor J; Department of Pathology and Laboratory Medicine Children's Hospital Colorado Aurora Colorado USA.
  • Powell CA; Department of Pediatrics, School of Medicine University of Colorado Anschutz Medical Campus Aurora Colorado USA.
  • Minczuk M; Department of Pathology and Laboratory Medicine Children's Hospital Colorado Aurora Colorado USA.
  • Snell RG; Diagnostic Genetics LabPLUS, Auckland City Hospital Auckland New Zealand.
  • Lehnert K; Present address: Division Chief, Pathology Genetics Sidra Medicine Doha Qatar.
  • Glamuzina E; Genetic Health Service New Zealand Auckland City Hospital Auckland New Zealand.
  • Jacobsen JC; MRC Mitochondrial Biology Unit University of Cambridge Cambridge UK.
JIMD Rep ; 64(3): 223-232, 2023 May.
Article in En | MEDLINE | ID: mdl-37151360
ABSTRACT
Disorders of mitochondrial function are a collectively common group of genetic diseases in which deficits in core mitochondrial translation machinery, including aminoacyl tRNA synthetases, are key players. Biallelic variants in the CARS2 gene (NM_024537.4), which encodes the mitochondrial aminoacyl-tRNA synthetase for cysteine (CARS2, mt-aaRScys; MIM*612800), result in childhood onset epileptic encephalopathy and complex movement disorder with combined oxidative phosphorylation deficiency (MIM#616672). Prior to this report, eight unique pathogenic variants in the CARS2 gene had been reported in seven individuals. Here, we describe a male who presented in the third week of life with apnoea. He rapidly deteriorated with paroxysmal dystonic crises and apnoea resulting in death at 16 weeks. He had no evidence of seizure activity or multisystem disease and had normal brain imaging. Skeletal muscle biopsy revealed a combined disorder of oxidative phosphorylation. Whole-exome sequencing identified biallelic variants in the CARS2 gene one novel (c.1478T>C, p.Phe493Ser), and one previously reported (c.655G>A, p.Ala219Thr; rs727505361). Northern blot analysis of RNA isolated from the patient's fibroblasts confirmed a clear defect in aminoacylation of the mitochondrial tRNA for cysteine (mt-tRNACys). To our knowledge, this is the earliest reported case of CARS2 deficiency with severe, early onset dystonia and apnoea, without epilepsy.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Prognostic_studies Language: En Journal: JIMD Rep Year: 2023 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Prognostic_studies Language: En Journal: JIMD Rep Year: 2023 Document type: Article