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Published on: January 4, 2016
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.
Abstract:
The major facilitator superfamily domain-containing protein 2A (MFSD2A) is a constituent of the blood-brain barrier and functions to transport lysophosphatidylcholines (LPCs) into the central nervous system. LPCs such as that derived from docosahexanoic acid (DHA) are indispensable to neurogenesis and maintenance of neurons, yet cannot be synthesized within the brain and are dependent on MFSD2A for brain uptake. Recent studies have implicated MFSD2A mutations in lethal and non-lethal microcephaly syndromes, with the severity correlating to the residual activity of the transporter. We describe two siblings with shared parental ancestry, in whom we identified a homozygous missense mutation (c.1205C > A; p.Pro402His) in MFSD2A. Both affected individuals had microcephaly, hypotonia, appendicular spasticity, dystonia, strabismus, and global developmental delay. Neuroimaging revealed paucity of white matter with enlarged lateral ventricles. Plasma lysophosphatidylcholine (LPC) levels were elevated, reflecting reduced brain transport. Cell-based studies of the p.Pro402His mutant protein indicated complete loss of activity of the transporter despite the non-lethal, attenuated phenotype. The aggregate data of MFSD2A-associated genotypes and phenotypes suggest that additional factors, such as nutritional supplementation or modifying genetic factors, may modulate the severity of disease and call for consideration of treatment options for affected individuals.
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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