Rank |
Title |
Journal |
Year |
PubWeight™‹?› |
1
|
Cytoplasmic serine hydroxymethyltransferase mediates competition between folate-dependent deoxyribonucleotide and S-adenosylmethionine biosyntheses.
|
J Biol Chem
|
2002
|
2.20
|
2
|
A mathematical model gives insights into nutritional and genetic aspects of folate-mediated one-carbon metabolism.
|
J Nutr
|
2006
|
1.82
|
3
|
Tracer-derived total and folate-dependent homocysteine remethylation and synthesis rates in humans indicate that serine is the main one-carbon donor.
|
Am J Physiol Endocrinol Metab
|
2003
|
1.44
|
4
|
Biomarkers of vitamin B-12 status in NHANES: a roundtable summary.
|
Am J Clin Nutr
|
2011
|
1.43
|
5
|
Biomarkers of folate status in NHANES: a roundtable summary.
|
Am J Clin Nutr
|
2011
|
1.43
|
6
|
Polymorphisms in the thymidylate synthase and serine hydroxymethyltransferase genes and risk of adult acute lymphocytic leukemia.
|
Blood
|
2002
|
1.34
|
7
|
Polymorphisms in cytoplasmic serine hydroxymethyltransferase and methylenetetrahydrofolate reductase affect the risk of cardiovascular disease in men.
|
J Nutr
|
2005
|
1.17
|
8
|
Methylenetetrahydrofolate reductase 677C->T polymorphism and folate status affect one-carbon incorporation into human DNA deoxynucleosides.
|
J Nutr
|
2005
|
1.17
|
9
|
Serine hydroxymethyltransferase anchors de novo thymidylate synthesis pathway to nuclear lamina for DNA synthesis.
|
J Biol Chem
|
2012
|
1.16
|
10
|
Mthfd1 is an essential gene in mice and alters biomarkers of impaired one-carbon metabolism.
|
J Biol Chem
|
2008
|
1.14
|
11
|
Bioinformatic and genetic association analysis of microRNA target sites in one-carbon metabolism genes.
|
PLoS One
|
2011
|
1.14
|
12
|
Regulation of folate-mediated one-carbon metabolism by 10-formyltetrahydrofolate dehydrogenase.
|
J Biol Chem
|
2006
|
1.13
|
13
|
In silico experimentation with a model of hepatic mitochondrial folate metabolism.
|
Theor Biol Med Model
|
2006
|
1.10
|
14
|
Mathematical modeling of folate metabolism: predicted effects of genetic polymorphisms on mechanisms and biomarkers relevant to carcinogenesis.
|
Cancer Epidemiol Biomarkers Prev
|
2008
|
1.08
|
15
|
Evaluation of common genetic variants in 82 candidate genes as risk factors for neural tube defects.
|
BMC Med Genet
|
2012
|
1.08
|
16
|
Cell and stage of transformation-specific effects of folate deficiency on methionine cycle intermediates and DNA methylation in an in vitro model.
|
Carcinogenesis
|
2005
|
1.07
|
17
|
Hyperhomocysteinemia due to methionine synthase deficiency, cblG: structure of the MTR gene, genotype diversity, and recognition of a common mutation, P1173L.
|
Am J Hum Genet
|
2002
|
1.02
|
18
|
Cerebral vascular dysfunction in methionine synthase-deficient mice.
|
Circulation
|
2005
|
1.01
|
19
|
Homocysteine synthesis is elevated but total remethylation is unchanged by the methylenetetrahydrofolate reductase 677C->T polymorphism and by dietary folate restriction in young women.
|
J Nutr
|
2005
|
0.98
|
20
|
Evaluation of 64 candidate single nucleotide polymorphisms as risk factors for neural tube defects in a large Irish study population.
|
Am J Med Genet A
|
2010
|
0.96
|
21
|
Micronutrients and women of reproductive potential: required dietary intake and consequences of dietary deficiency or excess. Part I--Folate, Vitamin B12, Vitamin B6.
|
J Matern Fetal Neonatal Med
|
2010
|
0.95
|
22
|
Do high blood folate concentrations exacerbate metabolic abnormalities in people with low vitamin B-12 status?
|
Am J Clin Nutr
|
2011
|
0.94
|
23
|
Analysis of methionine synthase reductase polymorphisms for neural tube defects risk association.
|
Mol Genet Metab
|
2005
|
0.93
|
24
|
Micronutrients and women of reproductive potential: required dietary intake and consequences of dietary deficiency or excess. Part II--vitamin D, vitamin A, iron, zinc, iodine, essential fatty acids.
|
J Matern Fetal Neonatal Med
|
2010
|
0.91
|
25
|
Folic acid and L-5-methyltetrahydrofolate: comparison of clinical pharmacokinetics and pharmacodynamics.
|
Clin Pharmacokinet
|
2010
|
0.90
|
26
|
Mathematical modeling predicts the effect of folate deficiency and excess on cancer-related biomarkers.
|
Cancer Epidemiol Biomarkers Prev
|
2011
|
0.86
|
27
|
Genetic and nutritional deficiencies in folate metabolism influence tumorigenicity in Apcmin/+ mice.
|
J Nutr Biochem
|
2006
|
0.84
|
28
|
Folate fortification: enough already?
|
Am J Clin Nutr
|
2003
|
0.81
|
29
|
Combined marginal folate and riboflavin status affect homocysteine methylation in cultured immortalized lymphocytes from persons homozygous for the MTHFR C677T mutation.
|
J Nutr
|
2003
|
0.81
|
30
|
Is low iron status a risk factor for neural tube defects?
|
Birth Defects Res A Clin Mol Teratol
|
2014
|
0.76
|
31
|
Folate-responsive birth defects: of mice and women.
|
Am J Clin Nutr
|
2011
|
0.75
|
32
|
Glutamate carboxypeptidase II and folate deficiencies result in reciprocal protection against cognitive and social deficits in mice: implications for neurodevelopmental disorders.
|
Dev Neurobiol
|
2012
|
0.75
|