Homozygous mutation in MFSD2A, encoding a lysolipid transporter for docosahexanoic acid, is associated with

Tamar Harel1, Debra Q Y Quek2, Bernice H Wong2

  • 1Department of Genetic and Metabolic Diseases, Hadassah-Hebrew University Medical Center, POB 12000, 9112001, Jerusalem, Israel. tamarhe@hadassah.org.il.

Neurogenetics
|July 26, 2018
PubMed

Insights

Mutations in the major facilitator superfamily domain-containing protein 2A (MFSD2A) disrupt lysophosphatidylcholine (LPC) transport, causing microcephaly and developmental delays. Despite a complete loss of transporter activity, the phenotype was attenuated, suggesting other factors influence disease severity.

Area of Science:

  • Neuroscience
  • Genetics
  • Biochemistry

Background:

  • The major facilitator superfamily domain-containing protein 2A (MFSD2A) is crucial for transporting essential lysophosphatidylcholines (LPCs) into the brain.
  • Docosahexanoic acid-derived LPCs are vital for neurogenesis and neuronal maintenance, requiring MFSD2A for brain uptake.
  • MFSD2A mutations are linked to microcephaly syndromes, with severity correlating to transporter activity.

Observation:

  • MFSD2A mutations have been linked to microcephaly syndromes, with severity correlating to transporter activity.
  • Two siblings with a homozygous MFSD2A missense mutation (c.1205C>A; p.Pro402His) presented with microcephaly, hypotonia, spasticity, dystonia, strabismus, and global developmental delay.
  • Neuroimaging showed reduced white matter and enlarged lateral ventricles, with elevated plasma LPC levels indicating impaired brain transport.

Findings:

  • Cell-based studies revealed the p.Pro402His mutant MFSD2A protein exhibited a complete loss of transporter activity.
  • Despite the complete loss of function in vitro, the affected individuals displayed a non-lethal, attenuated phenotype.

Implications:

  • The genotype-phenotype correlation suggests that genetic modifiers or nutritional interventions may influence the severity of MFSD2A-associated disorders.
  • Further research is warranted to explore potential therapeutic strategies for individuals with MFSD2A mutations.

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