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胸苷酸合成酶-5-氟-2'-脱氧尿苷酸-5,10-亚甲基四氢叶酸三元复合物中5-氟-2'-脱氧尿苷酸与四氢叶酸N-5之间共价键的化学降解研究证据。

Evidence from chemical degradation studies for a covalent bond from 5-fluoro-2'-deoxyuridylate to N-5 of tetrahydrofolate in the ternary complex of thymidylate synthetase-5-fluoro-2'-deoxyuridylate-5,10-methylenetetrahydrofolate.

作者信息

Pellino A M, Danenberg P V

出版信息

J Biol Chem. 1985 Sep 15;260(20):10996-1000.

PMID:3928628
Abstract

In the ternary complex of thymidylate synthetase, 5-fluoro-2'-deoxyuridylate (FdUMP), and 5,10-methylenetetrahydrofolate (5,10-CH2H4folate), the 5-fluorouracil moiety is covalently bound to the enzyme by a sulfide linkage from C-6 and to either N-5 or N-10 of H4folate by a methylene bridge from C-5. In an effort to establish the site by which H4folate is attached to FdUMP, the ternary complex was subjected to reagents that cleave the C-9, N-10 bond of folate derivatives. The complex was stable to zinc dust in hydrochloric acid, a reagent that cleaves N-10-substituted but not N-5-substituted folates. The conditions of the Bratton-Marshall reaction, which involve the use of nitrous acid, were found to cleave N-5-substituted folates in yields ranging from 5 to 50%. Exposure of the double-labeled thymidylate synthetase-FdUMP-[2-14C,7,9,3',5'-3H]5,10-CH2H4folate complex to the Bratton-Marshall reaction resulted in 16% cleavage of the C-9, N-10 bond with release solely of p-aminobenzoylglutamate, whereas all of the carbon-14-labeled pterin residue remained covalently bound to the protein. These results demonstrate that in the ternary complex, the 5-fluorouracil residue is connected by a covalent bond to N-5 of H4folate.

摘要

在胸苷酸合成酶、5-氟-2'-脱氧尿苷酸(FdUMP)和5,10-亚甲基四氢叶酸(5,10-CH2H4folate)的三元复合物中,5-氟尿嘧啶部分通过来自C-6的硫醚键与酶共价结合,并通过来自C-5的亚甲基桥与H4folate的N-5或N-10相连。为了确定H4folate与FdUMP连接的位点,将三元复合物用能裂解叶酸衍生物C-9、N-10键的试剂处理。该复合物对盐酸中的锌粉稳定,锌粉是一种能裂解N-10取代但不能裂解N-5取代叶酸的试剂。发现Bratton-Marshall反应的条件(涉及使用亚硝酸)能以5%至50%的产率裂解N-5取代的叶酸。将双标记的胸苷酸合成酶-FdUMP-[2-14C,7,9,3',5'-3H]5,10-CH2H4folate复合物暴露于Bratton-Marshall反应中,导致C-9、N-10键有16%的裂解,仅释放出对氨基苯甲酰谷氨酸,而所有碳-14标记的蝶呤残基仍与蛋白质共价结合。这些结果表明,在三元复合物中,5-氟尿嘧啶残基通过共价键与H4folate的N-5相连。

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