Thymidylate synthesis and utilization via the de novo pathway in normal and megaloblastic human bone marrow cells
Author:
Publisher
Wiley
Subject
Hematology,General Medicine
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/j.1600-0609.1989.tb01231.x/fullpdf
Reference19 articles.
1. Interrelations of vitamin B12 and folic acid metabolism: folic acid clearance studies;Herbert;J Clin Invest,1962
2. Effect of deoxyuridine on incorporation of tritiated thymidine: difference between normoblasts and megaloblasts;Killmann;Acta Med Scand,1964
3. Biochemical mechanisms in the Killman experiment. Critique of the deoxyuridine suppression test;Pelliniemi;J Clin Invest,1980
4. Thymidylate concentration in megaloblastic anaemia;Hoffbrand;Nature,1974
5. Characteristic abnormality of deoxy nucleoside triphosphate metabolism in megaloblastic anaemia;Iwata;Blood,1982
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1. Misincorporation of uracil into the DNA of folate- and B12-deficient HL60 cells;European Journal of Haematology;2009-04-24
2. Folate-deficient human lymphoblasts: Changes in deoxynucleotide metabolism and thymidylate cycle activities;European Journal of Haematology;2009-04-24
3. The effects of folate deficiency on thymidylate synthetase activity, deoxyuridine suppression, cell size and doubling time in a cultured human myeloid cell line;European Journal of Haematology;2009-04-24
4. The Cytotoxic Effect of the Vitamin B12Inhibitor Cyanocobalamin [c-lactam], and a Review of Other Vitamin B12Antagonists;Leukemia & Lymphoma;1998-01
5. 1 Morphology, biology and biochemistry of cobalamin- and folate-deficient bone marrow cells;Baillière's Clinical Haematology;1995-09
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