Literature DB >> 12673279

Reduced folate carrier polymorphism (80A-->G) and neural tube defects.

Patrizia De Marco1, Maria Grazia Calevo, Anna Moroni, Elisa Merello, Alessandro Raso, Richard H Finnell, Huiping Zhu, Luciano Andreussi, Armando Cama, Valeria Capra.   

Abstract

Transport of folates in mammalian cells occurs by a carrier-mediated mechanism. The human folate carrier (RFC-1) gene has been isolated and characterized. Within this gene, a common polymorphism, 80A-->G, changing a histidine to an arginine in exon 2 (H27R), was recently identified. Defects in folate metabolism, such as defective carrier molecules, could be implicated in the etiology of neural tube defects (NTDs). In the present case-control study, we recruited 174 Italian probands with nonsyndromic NTD, 43 mothers, 53 fathers and 156 control individuals and evaluated the impact of RFC-1 variant on NTD risk. A statistically significant risk was calculated for the 80GG genotype of the NTD cases (OR=2.35; 95% CI 1.21-4.58) and mothers (OR=2.74; 95% CI 0.92-8.38). On the contrary, the heterozygous genotype of the mothers and both heterozygous and homozygous genotypes of the fathers did not seem to be significant NTD risk factors. Furthemore, according to the multifactorial inheritance of NTDs, we demonstrated that the combined genotypes for MTHFR 1298A-->C and RFC-1 80A-->G polymorphisms of cases resulted in greater NTD risk than heterozygosity or homozygosity for RFC-1 80A-->G variant alone. Conversely, our data provide no evidence for an association between NTD phenotype and combined MTHFR C677T/RFC-1 A80G genotypes. Moreover, here we describe the combinations of the two MTHFR polymorphic sites (677CT and 1298AC) with RFC-1 genotypes. We found that both patients and controls could have at most quadruple-mutation combinations. Interestingly, 27% (7/26) of the mothers and 18.75% (30/160) of the cases genotyped presented four mutant alleles in comparison with 8.5% (11/129) of the controls. Finally, the frequency of NTD cases and mothers carrying combined heterozygosity for the two MTHFR polymorphisms and RFC-1 80GG homozygosity (677CT/1298AC/80GG) (cases=11.3%; mothers 11.5%) was increased compared with controls (1.6%). Altogether, our findings support the hypothesis that RFC-1 A80G variant may contribute to NTD susceptibility in the Italian population.

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Year:  2003        PMID: 12673279     DOI: 10.1038/sj.ejhg.5200946

Source DB:  PubMed          Journal:  Eur J Hum Genet        ISSN: 1018-4813            Impact factor:   4.246


  29 in total

1.  Association of neural tube defects with gene polymorphisms in one-carbon metabolic pathway.

Authors:  Lirong Cao; Yizheng Wang; Ruiping Zhang; Liang Dong; Hualei Cui; Yulian Fang; Linsheng Zhao; Ouyan Shi; Chunquan Cai
Journal:  Childs Nerv Syst       Date:  2017-08-02       Impact factor: 1.475

Review 2.  Current perspectives on the genetic causes of neural tube defects.

Authors:  Patrizia De Marco; Elisa Merello; Samantha Mascelli; Valeria Capra
Journal:  Neurogenetics       Date:  2006-08-29       Impact factor: 2.660

Review 3.  Genetic studies of myelomeningocele.

Authors:  Kazuaki Shimoji; Takaoki Kimura; Akihide Kondo; Yuichi Tange; Masakazu Miyajima; Hajime Arai
Journal:  Childs Nerv Syst       Date:  2013-09-07       Impact factor: 1.475

4.  Metabolic endophenotype and related genotypes are associated with oxidative stress in children with autism.

Authors:  S Jill James; Stepan Melnyk; Stefanie Jernigan; Mario A Cleves; Charles H Halsted; Donna H Wong; Paul Cutler; Kenneth Bock; Marvin Boris; J Jeffrey Bradstreet; Sidney M Baker; David W Gaylor
Journal:  Am J Med Genet B Neuropsychiatr Genet       Date:  2006-12-05       Impact factor: 3.568

Review 5.  Membrane transporters and folate homeostasis: intestinal absorption and transport into systemic compartments and tissues.

Authors:  Rongbao Zhao; Larry H Matherly; I David Goldman
Journal:  Expert Rev Mol Med       Date:  2009-01-28       Impact factor: 5.600

Review 6.  The search for genetic polymorphisms in the homocysteine/folate pathway that contribute to the etiology of human neural tube defects.

Authors:  Anne M Molloy; Lawrence C Brody; James L Mills; John M Scott; Peadar N Kirke
Journal:  Birth Defects Res A Clin Mol Teratol       Date:  2009-04

7.  Polymorphisms in FZD3 and FZD6 genes and risk of neural tube defects in a northern Han Chinese population.

Authors:  Ou-Yan Shi; Hui-Yun Yang; Yong-Ming Shen; Wei Sun; Chun-You Cai; Chun-Quan Cai
Journal:  Neurol Sci       Date:  2014-05-10       Impact factor: 3.307

Review 8.  One-carbon metabolism and folate transporter genes: Do they factor prominently in the genetic etiology of neural tube defects?

Authors:  John W Steele; Sung-Eun Kim; Richard H Finnell
Journal:  Biochimie       Date:  2020-02-13       Impact factor: 4.079

9.  Knockout of the folate transporter folt-1 causes germline and somatic defects in C. elegans.

Authors:  Misa U Austin; Wei-Siang Liau; Krishnaswamy Balamurugan; Balasubramaniem Ashokkumar; Hamid M Said; Craig W LaMunyon
Journal:  BMC Dev Biol       Date:  2010-05-04       Impact factor: 1.978

10.  118 SNPs of folate-related genes and risks of spina bifida and conotruncal heart defects.

Authors:  Gary M Shaw; Wei Lu; Huiping Zhu; Wei Yang; Farren B S Briggs; Suzan L Carmichael; Lisa F Barcellos; Edward J Lammer; Richard H Finnell
Journal:  BMC Med Genet       Date:  2009-06-03       Impact factor: 2.103

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