Guéant Jean-Louis, Guéant-Rodriguez Rosa-Maria, Anello Guido, Bosco Paolo, Brunaud Laurent, Romano Corrado, Ferri Rafaele, Romano Antonino, Candito Mirande, Namour Bernard
INSERM 00-14, Laboratory of Cellular and Molecular Pathology in Nutrition, Faculty of Medicine Nancy, Vandoeuvre lès Nancy, France.
Clin Chem Lab Med. 2003 Nov;41(11):1473-7. doi: 10.1515/CCLM.2003.226.
One-carbon metabolism is under the influence of folate, vitamin B12 and genetic polymorphisms of methylenetetrahydrofolate reductase (MTHFR 677 C --> T and 1298 A --> C), of methionine synthase (MTR 2756 C --> G), methionine synthase reductase (MTRR 66 A --> G) and transcobalamin (TCN 776 C --> G). The pathogenesis of neural tube defect (NTD) may be related to this metabolism. The influence of the MTHFR 677 C --> T polymorphism reported in The Netherlands and Ireland can be questioned in southern Italy, France and Great Britain. MTRR, combined with a low level of vitamin B12, increases the risk of NTD and of having a child with NTD in Canada, while TCN 776 GG and MTRR 66 GG mutated genotypes associated with the MTHFR 677 CC wild-type are predictors of NTD cases in Sicily. Down syndrome (DS) is due to a failure of normal chromosomal segregation during meiosis, possibly related to one-carbon metabolism. MTHFR 677 C --> T and MTRR 66 A --> G polymorphisms are associated with a greater risk of having a child with DS in North America, Ireland and The Netherlands. In contrast, MTHFR 677 C --> T has no influence on DS risk in France and Sicily, while homocysteine and MTR 2756 AG/GG genotypes are predictors of DS risk in Sicily. In conclusion, NTD and DS are influenced by the same genetic determinants of one-carbon metabolism. The distinct data produced in different geographical areas may be explained by differences in the nutritional environment and genetic characteristics of the populations.
一碳代谢受叶酸、维生素B12以及亚甲基四氢叶酸还原酶(MTHFR 677 C→T和1298 A→C)、甲硫氨酸合成酶(MTR 2756 C→G)、甲硫氨酸合成酶还原酶(MTRR 66 A→G)和转钴胺素(TCN 776 C→G)基因多态性的影响。神经管缺陷(NTD)的发病机制可能与此代谢有关。荷兰和爱尔兰报道的MTHFR 677 C→T多态性的影响在意大利南部、法国和英国可能受到质疑。在加拿大,MTRR与低水平的维生素B12相结合,会增加NTD风险以及生育患NTD孩子的风险,而在西西里岛,与MTHFR 677 CC野生型相关的TCN 776 GG和MTRR 66 GG突变基因型是NTD病例的预测指标。唐氏综合征(DS)是由于减数分裂过程中正常染色体分离失败所致,可能与一碳代谢有关。在北美、爱尔兰和荷兰,MTHFR 677 C→T和MTRR 66 A→G多态性与生育患DS孩子的风险增加有关。相比之下,MTHFR 677 C→T对法国和西西里岛的DS风险没有影响,而在西西里岛,同型半胱氨酸和MTR 2756 AG/GG基因型是DS风险的预测指标。总之,NTD和DS受一碳代谢相同遗传决定因素的影响。不同地理区域产生的不同数据可能是由人群营养环境和遗传特征的差异所解释的。