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Mutations in folate transporter genes and risk for human myelomeningocele
Tina O Findley1, Joy C Tenpenny1, Michelle R O'Byrne2
1Division of Neonatology, The University of Texas Health Science Center at Houston, Houston, Texas.
Abstract:
The molecular mechanisms linking folate deficiency and neural tube defect (NTD) risk in offspring remain unclear. Folate transporters (SLC19A1, SLC46A1, SLC25A32, and FOLH1) and folate receptors (FOLR1, FOLR2, and FOLR3) are suggested to play essential roles in transporting folate from maternal intestinal lumen to the developing embryo. Loss of function variants in these genes may affect folate availability and contribute to NTD risk. This study examines whether variants within the folate transporter and receptor genes are associated with an increased risk for myelomeningocele (MM). Exons and their flanking intron sequences of 348 MM subjects were sequenced using the Sanger sequencing method and/or next generation sequencing to identify variants. Frequencies of alleles of single nucleotide polymorphisms (SNPs) in MM subjects were compared to those from ethnically matched reference populations to evaluate alleles' associated risk for MM. We identified eight novel variants in SLC19A1 and twelve novel variants in FOLR1, FOLR2, and FOLR3. Pathogenic variants include c.1265delG in SLC19A1 resulting in an early stop codon, four large insertion deletion variants in FOLR3, and a stop_gain variant in FOLR3. No new variants were identified in SLC46A1, SLC25A32, or FOLH1. In SLC19A1, c.80A>G (rs1051266) was not associated with our MM cohort; we did observe a variant allele G frequency of 61.7%, higher than previously reported in other NTD populations. In conclusion, we discovered novel loss of function variants in genes involved in folate transport in MM subjects. Our results support the growing evidence of associations between genes involved in folate transport and susceptibility to NTDs.
Insights
Novel loss of function variants in folate transport genes were discovered in myelomeningocele (MM) subjects, supporting links between folate transport and neural tube defect (NTD) risk.
Area of Science:
- Genetics
- Developmental Biology
- Nutritional Science
Background:
- The molecular basis connecting folate deficiency to neural tube defect (NTD) risk remains incompletely understood.
- Folate transporters and receptors are crucial for folate transport from mother to embryo, and their dysfunction may increase NTD risk.
Purpose of the Study:
- To investigate the association between variants in folate transporter and receptor genes and the risk of myelomeningocele (MM), a type of NTD.
- To identify novel genetic variants within key folate transport genes that may contribute to MM susceptibility.
Main Methods:
- Exome sequencing of 348 MM subjects and their flanking introns using Sanger and/or next-generation sequencing.
- Comparison of allele frequencies of identified single nucleotide polymorphisms (SNPs) in MM subjects against ethnically matched reference populations.
Main Results:
- Eight novel variants were identified in SLC19A1, and twelve in FOLR1, FOLR2, and FOLR3.
- Pathogenic variants, including a premature stop codon in SLC19A1 and multiple variants in FOLR3, were found.
- A higher variant allele frequency for SLC19A1 (rs1051266) was observed in the MM cohort compared to previous NTD studies.
Conclusions:
- Novel loss-of-function variants in genes critical for folate transport were identified in individuals with MM.
- These findings reinforce the association between genetic variations in folate transport pathways and susceptibility to neural tube defects.
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