Defective DNA synthesis in human megaloblastic bone marrow: effects of hydroxy-B 12 5'-deoxyadenosyl-B 12 and methyl-B 12 .
نویسندگان
چکیده
In cobaiamin deficiency, inadequate DNA-thymine synthesis appears to resuit from decreased conversion of N5methyltetrahydrofolic acid to tetrahydrofo ic acid (THE). The N5-methyl THE conversion catalyzed by N5methyl THF-homocysteine methyltransferase requires a cobalamin coenzyme, presumed to be methylcobalamin (methyl-B12). In support of the above, in B12-deficient marrow cultures, methyl-B12 appears to be the most effective cobalamin form to correct defective DNA-thymine synthesis. This was measured by the ability of deoxyuridine to suppress tritiated thymidine incorporation into DNA. While methyl-B12 produced complete correction of defective DNA synthesis, 5’deoxyadenosyl cobalamin (5 ‘-deoxyadenosyl-B12), cyanocobalamin (cyanoB12), and hydroxycobalamin (hydroxyBi2) effected only partial correction. The methyl-B12-mediated correction was blocked by methotrexate (MTX). The effect of MTX, in turn, was reversed by THE. In folate-deficient marrows, the Bi2 analogues did not correct defective DNA-thymine synthesis. The differential effects of hydroxy-B12 and methyl-B12 in correcting defective DNA-thymine synthesis in B12-deficient marrows suggest that the complex mechanisms for N5-methyi THF-homocysteine methyltransferase activation in Escherichia coil may not predominate in human hemopoietic tissue. Since methyl-B12 is the main component of plasma cobalamins, the critical determinant for megaloblastic maturation in B12 deficiency may be the delivery rate of methyl-B12 to marrow cells and its direct activation of N5-methyl THF-homocysteine methyltransferase.
منابع مشابه
Defective DNA Synthesis in Human Megaloblastic Bone Marrow
In cobaiamin deficiency, inadequate DNA-thymine synthesis appears to resuit from decreased conversion of N5methyltetrahydrofolic acid to tetrahydrofo ic acid (THE). The N5-methyl THE conversion catalyzed by N5methyl THF-homocysteine methyltransferase requires a cobalamin coenzyme, presumed to be methylcobalamin (methyl-B12). In support of the above, in B12-deficient marrow cultures, methyl-B12 ...
متن کاملDefective DNA synthesis in human megaloblastic bone marrow: effects of homocysteine and methionine.
In B(12) deficiency, inadequate DNA synthesis seems due in large measure to a block of tetrahydrofolic acid (THFA) regeneration from 5-methyl THFA (via homocysteine transmethylation). In support of the above, homocysteine appears to facilitate and methionine to reduce de novo DNA synthesis. This was measured by the ability of deoxyuridine to suppress thymidine-(3)H uptake into DNA in human bone...
متن کاملEffect of folate and cobalamin compounds on the deoxyuridine suppression test in vitamin B12 and folate deficiency.
In vitro, deoxyuridine (dU) failed to block the incorporation of 3H-thymidine into bone marrow from 11 cases of vitamin B,2 deficiency, 6 cases of folate deficiency, an’i 3 cases of combined deficiency, even in patients without overt anemia, macrocytosis, and/or megaloblastosis. Different folate and cobalamin compounds had different effects on the incorporation of 3H-thymidine in the two defici...
متن کامل5-Methyltetrahydrofolate related enzymes and DNA polymerase alpha activities in bone marrow cells from patients with vitamin B12 deficient megaloblastic anemia.
The activities of 5-methyltetrahydrofolate (5-CH3THF) related enzymes and DNA polymerase alpha were determined in bone marrow cells obtained from patients with vitamin B12 deficient megaloblastic anemia and compared with those from healthy volunteers and patients with hemolytic anemia. 5-CH3THF homocysteine methyltransferase activity was significantly lower than that in the control subjects. 5,...
متن کاملVitamin B-12.
V itamin B-12 is a cofactor for 2 enzymes. In the cytoplasm, methionine synthase requires vitamin B-12 in the form of methylcobalamin and catalyzes the conversion of homocysteine to methi-onine by transfer of a methyl group from methyltet-rahydrofolate. This enzyme links the methylation pathway through synthesis of the methyl donor S-adenosyl methionine and the pathway in which purine and pyrim...
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ورودعنوان ژورنال:
- Blood
دوره 41 2 شماره
صفحات -
تاریخ انتشار 1973