All Relations between Neural Tube Defects and mtr

Publication Sentence Publish Date Extraction Date Species
Rekha Kumari, Santosh Kumar, Vinit Kumar Thakur, Kalpana Singh, Uday Kuma. Journal of Indian Association of Pediatric Surgeons. vol 27. issue 6. 2023-01-30. PMID:36714485. methylene tetra hydro folate reductase (mthfr) c677t (rs1801133) and methionine synthase enzyme (mtr) a2756g (rs1805087) are two such snps occurring in coding sequence of the respective genes, which are frequently seen with neural tube defects (ntds). 2023-01-30 2023-08-14 Not clear
Yongxin Wang, Yuan Liu, Wenyu Ji, Hu Qin, Hao Wu, Danshu Xu, Turtuohut Tukebai, Zengliang Wan. Analysis of MTR and MTRR Polymorphisms for Neural Tube Defects Risk Association. Medicine. vol 94. issue 35. 2016-02-11. PMID:26334892. analysis of mtr and mtrr polymorphisms for neural tube defects risk association. 2016-02-11 2023-08-13 Not clear
Shengrong Ouyang, Zhuo Liu, Yuanyuan Li, Jianxin W. Meta-analyses on the association of MTR A2756G and MTRR A66G polymorphisms with neural tube defect risks in Caucasian children. The journal of maternal-fetal & neonatal medicine : the official journal of the European Association of Perinatal Medicine, the Federation of Asia and Oceania Perinatal Societies, the International Society of Perinatal Obstetricians. vol 26. issue 12. 2014-03-06. PMID:23425389. methionine synthase (mtr) and mtr reductase (mtrr) genes have been considered to be implicated in the development of neural tube defects (ntds). 2014-03-06 2023-08-12 Not clear
Shengrong Ouyang, Zhuo Liu, Yuanyuan Li, Jianxin W. Meta-analyses on the association of MTR A2756G and MTRR A66G polymorphisms with neural tube defect risks in Caucasian children. The journal of maternal-fetal & neonatal medicine : the official journal of the European Association of Perinatal Medicine, the Federation of Asia and Oceania Perinatal Societies, the International Society of Perinatal Obstetricians. vol 26. issue 12. 2014-03-06. PMID:23425389. meta-analyses on the association of mtr a2756g and mtrr a66g polymorphisms with neural tube defect risks in caucasian children. 2014-03-06 2023-08-12 Not clear
Mei Yang, Liping Yang, Ling Qi, Yiyang Guo, Xiaofang Lin, Yu Zhang, Yukai D. Association between the methionine synthase A2756G polymorphism and neural tube defect risk: a meta-analysis. Gene. vol 520. issue 1. 2013-06-12. PMID:23438943. many studies have accessed the association between methionine synthase (mtr) a2756g polymorphism and neural tube defect (ntd). 2013-06-12 2023-08-12 Not clear
Shengrong Ouyang, Yuanyuan Li, Zhuo Liu, Huibo Chang, Jianxin W. Association between MTR A2756G and MTRR A66G polymorphisms and maternal risk for neural tube defects: a meta-analysis. Gene. vol 515. issue 2. 2013-03-26. PMID:23266814. methionine synthase (mtr) and methionine synthase reductase (mtrr) genes have been considered to be implicated in the development of neural tube defects (ntds). 2013-03-26 2023-08-12 Not clear
Shengrong Ouyang, Yuanyuan Li, Zhuo Liu, Huibo Chang, Jianxin W. Association between MTR A2756G and MTRR A66G polymorphisms and maternal risk for neural tube defects: a meta-analysis. Gene. vol 515. issue 2. 2013-03-26. PMID:23266814. association between mtr a2756g and mtrr a66g polymorphisms and maternal risk for neural tube defects: a meta-analysis. 2013-03-26 2023-08-12 Not clear
Helmi Yousif Al Farr. Methionine synthase polymorphisms (MTR 2756 A>G and MTR 2758 C>G) frequencies and distribution in the Jordanian population and their correlation with neural tube defects in the population of the northern part of Jordan. Indian journal of human genetics. vol 16. issue 3. 2011-07-14. PMID:21206701. methionine synthase polymorphisms (mtr 2756 a>g and mtr 2758 c>g) frequencies and distribution in the jordanian population and their correlation with neural tube defects in the population of the northern part of jordan. 2011-07-14 2023-08-12 human
Valerie B O'Leary, James L Mills, Faith Pangilinan, Peadar N Kirke, Christopher Cox, Mary Conley, Andrea Weiler, Kun Peng, Barry Shane, John M Scott, Anne Parle-McDermott, Anne M Molloy, Lawrence C Brod. Analysis of methionine synthase reductase polymorphisms for neural tube defects risk association. Molecular genetics and metabolism. vol 85. issue 3. 2005-09-14. PMID:15979034. single nucleotide polymorphisms (snps) within the mtrr gene may potentially compromise mtr activity leading to elevated homocysteine levels, a known risk factor for neural tube defects (ntds). 2005-09-14 2023-08-12 Not clear
Elzbieta Sliwerska, Agnieszka Szpecht-Potock. [Mutations of MTHFR, MTR, MTRR genes as high risk factors for neural tube defects]. Medycyna wieku rozwojowego. vol 6. issue 4. 2003-08-01. PMID:12810988. [mutations of mthfr, mtr, mtrr genes as high risk factors for neural tube defects]. 2003-08-01 2023-08-12 Not clear
R M Guéant-Rodriguez, C Rendeli, B Namour, L Venuti, A Romano, G Anello, P Bosco, R Debard, P Gérard, M Viola, E Salvaggio, J L Guéan. Transcobalamin and methionine synthase reductase mutated polymorphisms aggravate the risk of neural tube defects in humans. Neuroscience letters. vol 344. issue 3. 2003-07-17. PMID:12812837. we evaluated the association of polymorphisms of three genes affecting vitamin b12-dependent remethylation of homocysteine, transcobalamin (tc), methionine synthase (mtr) and mtr reductase (mtrr), combined or not with methylenetetrahydrofolate reductase (mthfr), with the risk of having neural tube defect in 40 children with spina bifida and 58 matched controls from south italy. 2003-07-17 2023-08-12 Not clear