Abstract
Arginine:glycine amidinotransferase (AGAT) catalyzes the first step of creatine synthesis, resulting in the formation of guanidinoacetate, which is a substrate for creatine formation. In two female siblings with mental retardation who had brain creatine deficiency that was reversible by means of oral creatine supplementation and had low urinary guanidinoacetate concentrations, AGAT deficiency was identified as a new genetic defect in creatine metabolism. A homozygous G-A transition at nucleotide position 9297, converting a tryptophan codon (TGG) to a stop codon (TAG) at residue 149 (T149X), resulted in undetectable cDNA, as investigated by reverse-transcription PCR, as well as in undetectable AGAT activity, as investigated radiochemically in cultivated skin fibroblasts and in virus-transformed lymphoblasts of the patients. The parents were heterozygous for the mutant allele, with intermediate residual AGAT activities. Recognition and treatment with oral creatine supplements may prevent neurological sequelae in affected patients.
MeSH Terms
Amidinotransferases/deficiency,genetics,metabolism
Amino Acid Metabolism, Inborn Errors/drug therapy,enzymology,genetics,metabolism
Amino Acid Sequence
Base Sequence
Brain/metabolism
Child
Child, Preschool
Codon, Nonsense/genetics
Creatine/administration & dosage,metabolism,therapeutic use
Female
Fibroblasts
Genotype
Glycine/analogs & derivatives,urine
Humans
Intellectual Disability/complications,enzymology,genetics,metabolism
Lymphocytes
Molecular Sequence Data
Nuclear Family
RNA, Messenger/analysis,genetics
Chemicals
Codon, Nonsense
RNA, Messenger
Amidinotransferases
glycine amidinotransferase
glycocyamine
Creatine
Glycine
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Item C B
Department of Pediatrics, University Hospital and General Hospital of Vienna, A-1090 Vienna, Austria.
Stöckler-Ipsiroglu S
Stromberger C
Mühl A
Alessandrì M G
Bianchi M C
Tosetti M
Fornai F
Cioni G
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