543 results on '"Stover, Patrick J"'
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2. DTYMK is an essential gene in mice and heterozygosity does not cause neural tube defects
3. More Nutrition Precision, Better Decisions for the Health of Our Nation
4. Knowledge gaps in understanding the metabolic and clinical effects of excess folates/folic acid: a summary, and perspectives, from an NIH workshop
5. Late-life dietary folate restriction reduces biosynthesis without compromising healthspan in mice.
6. Dual RN-RDN program: Training for the future of health and nutrition
7. Author Reply to Peer Reviews of Late-life dietary folate restriction reduces biosynthetic processes without compromising healthspan in mice
8. Extracellular serine and glycine are required for mouse and human skeletal muscle stem and progenitor cell function
9. Best practices in nutrition science to earn and keep the public's trust
10. The Roles of SUMO in Metabolic Regulation
11. Deoxyuracil in DNA in health and disease
12. Erythritol is a pentose-phosphate pathway metabolite and associated with adiposity gain in young adults
13. Folate rescues vitamin B 12 depletion-induced inhibition of nuclear thymidylate biosynthesis and genome instability
14. Arsenic trioxide targets MTHFD1 and SUMO-dependent nuclear de novo thymidylate biosynthesis
15. Nutrition in the Age of Precision and Systems Biology
16. Precision Nutrition: The Hype Is Exceeding the Science and Evidentiary Standards Needed to Inform Public Health Recommendations for Prevention of Chronic Disease
17. A Conversation with James Ntambi
18. Alcohol Dehydrogenase 5 Is a Source of Formate for De Novo Purine Biosynthesis in HepG2 Cells
19. First things first—addressing frank nutrient deficiencies must remain a priority in the age of precision nutrition
20. The 5-formyltetrahydrofolate futile cycle reduces pathway stochasticity in an extended hybrid-stochastic model of folate-mediated one-carbon metabolism
21. Neurobiology of eating behavior, nutrition, and health.
22. Data from Shmt1 Heterozygosity Impairs Folate-Dependent Thymidylate Synthesis Capacity and Modifies Risk of Apcmin-Mediated Intestinal Cancer Risk
23. Supplementary Tables 1-2 from Shmt1 Heterozygosity Impairs Folate-Dependent Thymidylate Synthesis Capacity and Modifies Risk of Apcmin-Mediated Intestinal Cancer Risk
24. Vitamin B-12 and Perinatal Health
25. Maternal dietary uridine causes, and deoxyuridine prevents, neural tube closure defects in a mouse model of folate-responsive neural tube defects
26. Human mutations in methylenetetrahydrofolate dehydrogenase 1 impair nuclear de novo thymidylate biosynthesis
27. Unrecognized riboflavin deficiency and evidence for cascading effects on vitamin B-6 status
28. Safety of folic acid
29. Gastrointestinal Disorders: Overview
30. The Roles of SUMO in Metabolic Regulation
31. Muddy water: Additional observational data cannot aid in determining whether there is a physiological interaction between low vitamin B12 and high folate in cognitive health
32. Regulation of Folate Metabolism by Iron
33. Effects of Cellular Glycine on Cell Proliferation
34. Rapid Purification of the T-Protein of the Glycine Cleavage System from Rabbit Liver
35. Mimosine’s Mechanism is Pyridoxal-Phosphate Independent
36. Maternal Mthfd1 disruption impairs fetal growth but does not cause neural tube defects in mice
37. Dietary folate, but not choline, modifies neural tube defect risk in Shmt1 knockout mice
38. Identification of a de novo thymidylate biosynthesis pathway in mammalian mitochondria
39. Trafficking of Intracellular Folates
40. Shmt1 and de novo thymidylate biosynthesis underlie folate-responsive neural tube defects in mice
41. Dual RN-RDN Program: Training for the Future of Health and Nutrition
42. Provision of folic acid for reducing arsenic toxicity in arsenic-exposed children and adults
43. Celebrating 40 Years of the Annual Review of Nutrition
44. Biomarkers of Nutrition for Development— Folate Review1-5
45. Healthy diet sustains the environment too
46. Bringing clarity to the role of MTHFR variants in neural tube defect prevention1-3
47. Vitamin B-6
48. Nutritional Genomics
49. Chapter 1 Folate‐Mediated One‐Carbon Metabolism
50. Genetic and Epigenetic Contributions to Human Nutrition and Health: Managing Genome–Diet Interactions
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