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Adult-onset methylenetetrahydrofolate reductase deficiency
Daniela Vieira1, Cristina Florindo2, Isabel Tavares de Almeida2
1Serviço de Neurologia, Centro Hospitalar e Universitário de Coimbra EPE, Coimbra, Portugal danielacgvieira@gmail.com.
Insights
Adult-onset hyperhomocysteinemia, a rare condition, can cause neurological issues. Early diagnosis and treatment with betaine are crucial for managing this severe metabolic disorder.
Area of Science:
- Biochemistry
- Genetics
- Neurology
Background:
- Severe hyperhomocysteinemia is linked to inborn errors of homocysteine metabolism, typically presenting in infancy.
- Adult-onset forms are uncommon and present with milder symptoms, emphasizing the need for early diagnosis and treatment.
Observation:
- A 23-year-old male experienced progressive speech and gait impairment, along with lower limb numbness.
- Neurological examination indicated dysarthria, reduced vibratory sensation, and ataxia. Brain MRI showed white matter lesions and cortical atrophy.
Findings:
- The patient exhibited folate and vitamin B12 deficiency, elevated serum homocysteine, and low methionine levels.
- Despite vitamin supplementation, homocysteine remained high. Genetic analysis revealed homozygous MTHFR mutations (c.1003C>T and C677T).
Implications:
- This case highlights a novel MTHFR mutation causing adult-onset hyperhomocysteinemia.
- Betaine treatment led to clinical and biochemical improvement, underscoring its therapeutic potential.
Abstract:
Severe hyperhomocysteinemia (>100 µmol/L) is often associated with inborn errors of homocysteine metabolism. It manifests typically in neonatal period with developmental delay, hypotonia, feeding problems or failure to thrive. Adult-onset forms are rare and include less severe manifestations. Early diagnosis is crucial because effective treatment is available. A 23-year-old man presented with a 3-week history of speech and gait impairment, and numbness in lower limbs. Neurological examination revealed dysarthria, decreased vibratory sensation in both legs and appendicular and gait ataxia. Brain MRI revealed T2-hyperintense symmetric white matter lesions and cortical atrophy. He had folate and vitamin B12 deficiency, a markedly elevated serum homocysteine and low methionine. Despite vitamin supplementation homocysteine levels remained elevated. Molecular studies of 5,10-methylenetetrahydrofolate reductase (MTHFR) gene revealed a new pathogenic mutation (c.1003C>T (p.Arg335Cys)) and a polymorphism (C677T (p.Ala222Val)) associated with hyperhomocysteinemia, both in homozygosity. The patient started betaine with clinical and biochemical improvement.
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