| Literature DB >> 30031689 |
Lance H Rodan1, Wanshu Qi2, Gregory S Ducker3, Didem Demirbas2, Regina Laine4, Edward Yang5, Melissa A Walker6, Florian Eichler6, Joshua D Rabinowitz3, Irina Anselm4, Gerard T Berry7.
Abstract
Folate metabolism in the brain is critically important and serves a number of vital roles in nucleotide synthesis, single carbon metabolism/methylation, amino acid metabolism, and mitochondrial translation. Genetic defects in almost every enzyme of folate metabolism have been reported to date, and most have neurological sequelae. We report 2 patients presenting with a neurometabolic disorder associated with biallelic variants in the MTHFS gene, encoding 5,10-methenyltetrahydrofolate synthetase. Both patients presented with microcephaly, short stature, severe global developmental delay, progressive spasticity, epilepsy, and cerebral hypomyelination. Baseline CSF 5-methyltetrahydrolate (5-MTHF) levels were in the low-normal range. The first patient was treated with folinic acid, which resulted in worsening cerebral folate deficiency. Treatment in this patient with a combination of oral L-5-methyltetrahydrofolate and intramuscular methylcobalamin was able to increase CSF 5-MTHF levels, was well tolerated over a 4 month period, and resulted in subjective mild improvements in functioning. Measurement of MTHFS enzyme activity in fibroblasts confirmed reduced activity. The direct substrate of the MTHFS reaction, 5-formyl-THF, was elevated 30-fold in patient fibroblasts compared to control, supporting the hypothesis that the pathophysiology of this disorder is a manifestation of toxicity from this metabolite.Entities:
Keywords: 5,10-methenyltetrahydrofolate synthetase; Folate; Folinic acid; Neurodegeneration; Neurometabolism
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Year: 2018 PMID: 30031689 PMCID: PMC6557438 DOI: 10.1016/j.ymgme.2018.06.006
Source DB: PubMed Journal: Mol Genet Metab ISSN: 1096-7192 Impact factor: 4.797