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ArticleMolecular biology reports2025

A novel truncated mutation in folate receptor α (FRα) affecting its glycosylation and affinity for folate in a consanguineous family with progressive encephalopathy: follow up and treatment improvement.

Felhi Rahma, Alila-Fersi Olfa, Bahri Mahjoub, Mkaouar-Rebai Emna, Chouchen Jihene, Fahkfakh Faiza, Tlili Abdelaziz

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Article in Molecular biology reports, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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7 authors.

Felhi RahmaMolecular and Functional Genetics Laboratory, Faculty of Sciences of Sfax, University of Sfax, Route Soukra. Km 3, Sfax, Tunisia. Rahma.90felhi@gmail.com.
Alila-Fersi OlfaMolecular and Functional Genetics Laboratory, Faculty of Sciences of Sfax, University of Sfax, Route Soukra. Km 3, Sfax, Tunisia.
Bahri MahjoubDepartment of Pediatrics, University Hospital Taher Sfar, Mahdia, Tunisia.
Mkaouar-Rebai EmnaMolecular and Functional Genetics Laboratory, Faculty of Sciences of Sfax, University of Sfax, Route Soukra. Km 3, Sfax, Tunisia.
Chouchen JiheneDepartment of Applied Biology, College of Sciences, University of Sharjah, Sharjah, UAE.
Fahkfakh FaizaMolecular and Functional Genetics Laboratory, Faculty of Sciences of Sfax, University of Sfax, Route Soukra. Km 3, Sfax, Tunisia.
Tlili AbdelazizDepartment of Applied Biology, College of Sciences, University of Sharjah, Sharjah, UAE.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

introductionCerebral folate deficiency syndrome (CFDS) is a rare neurometabolic disorder with clinical features including late infantile onset refractory seizures, ataxia, movement disorder, unexplained global developmental delay, and leukoencephalopathy. It is an autosomal recessive disorder characterized by low levels of the active form of folate (5- MTHF) in cerebrospinal fluid (CSF) caused by mutations in FOLR1 gene. This gene encodes the membrane protein folate receptor "FRα," which is a glycophosphatidylinositol (GPI)-anchored cell membrane protein that regulates folate transport into the cells. PATIENTS AND

methodsHere, we report a consanguineous family with a girl diagnosed with progressive encephalopathy. To determine the genetic cause of this disease, whole exome sequencing (WES) was performed on the affected individual. As a further analysis, molecular docking and bioinformatics predictions were performed.

resultsWES analysis revealed a novel homozygous frameshift mutation (c.466insT; p. Trp156LeufsTer12) in FOLR1 gene. This mutation was present at homozygous state in the affected patient which inherited it from her heterozygous parents. It generates a truncated FRα protein leading to the missing of two important glycosylation sites at Asn139 and Asn179 and the loss of the GPI anchor at Ala204 affecting protein anchoring in the cell membrane. In addition, molecular docking showed that the truncating mutation disturbs the affinity of the FRα receptor to its substrate the folate caused by the loss of important residues in the RFα-folate interaction region. Further, low level of 5-methyltetrahydrofolate was detected in the blood and the CSF of the patient. The patient was then treated with a dose of 5 mg/kg/day of FA as a supplement to antiepileptic drug (AED) leading to mild improvement that was achieved in terms of reactivity and motor skills.

conclusionBased on the c.466insT; p. Trp156LeufsTer12 mutation segregation and low 5-methyltetrahydrofolate levels in the CSF, the studied patient was diagnosed with CFD.

Indexed as

Brain DiseasesFolate Receptor 1Folic AcidFolic Acid DeficiencyChildConsanguinityExome SequencingFemaleGlycosylationHumansMaleMolecular Docking SimulationMutationPedigreeFolate Receptor 1Folic AcidFOLR1 protein, humanCerebral folate deficiencyFOLR1Neurometabolic diseaseTreatmentWES

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