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牛乳黄嘌呤氧化酶对蝶啶 -4- 酮、鲁米诺嗪及相关蝶啶的甲基衍生物的氧化作用。

Oxidation of methyl derivatives of pteridin-4-one, lumazine and related pteridines by bovine milk xanthine oxidase.

作者信息

Bergmann F, Levene L, Tamir I, Rahat M

出版信息

Biochim Biophys Acta. 1977 Jan 11;480(1):21-38. doi: 10.1016/0005-2744(77)90317-5.

Abstract
  1. Pteridin-4-ones, methylated at nitrogen or carbon, N-methylated lumazines and related oxopteridines were studied as substrates of a highly purified bovine milk xanthine oxidase (xanthine : oxygen oxidoreductase, EC 1.2.3.2). 2. The enzyme can oxidise at high rates both uncharged and anionic substrates. Variation of enzymic activity with pH is mainly due to pH-dependent changes in the active enzymic center. 3. Milk xanthine oxidases at different stages of purification convert pteridin-4-one into the 4,7-dione (compound 13 in this article). 4. Methylation at C-6 in the pyrazine moiety enhances enzymic attack at C-2 in the pyrimidine ring. N-Methylation may increase or reduce rates of oxidation. 5. For oxidation at C-2, the most favorable form of the substrate bears a double bond at C(2) = N(3). Attack at C-7 is enhanced strongly in structures bearing a double bond at C(6) = C(7). 6. In general, pteridines react with xanthine oxidase as non-hydrated molecules. However, oxidation of 8-methyllumazine at C-7 may take place by dehydrogenation of the 7-CHOH group of the covalently hydrated molecule.
摘要
  1. 对在氮或碳上甲基化的蝶啶 - 4 - 酮、N - 甲基化的核黄素以及相关的氧化蝶啶作为高纯度牛乳黄嘌呤氧化酶(黄嘌呤:氧氧化还原酶,EC 1.2.3.2)的底物进行了研究。2. 该酶能以高速率氧化不带电荷和带阴离子的底物。酶活性随pH的变化主要归因于活性酶中心中依赖于pH的变化。3. 处于不同纯化阶段的牛乳黄嘌呤氧化酶将蝶啶 - 4 - 酮转化为4,7 - 二酮(本文中的化合物13)。4. 吡嗪部分的C - 6甲基化增强了嘧啶环中C - 2处的酶促攻击。N - 甲基化可能增加或降低氧化速率。5. 对于C - 2处的氧化,底物最有利的形式在C(2)=N(3)处带有双键。在C(6)=C(7)处带有双键的结构中,C - 7处的攻击会大大增强。6. 一般来说,蝶啶与黄嘌呤氧化酶反应时作为非水合分子。然而,8 - 甲基核黄素在C - 7处的氧化可能通过共价水合分子的7 - CHOH基团脱氢而发生。

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Enzymic oxidation of 3-hydroxyxanthine to 3-hydroxyuric acid.3-羟基黄嘌呤的酶促氧化生成3-羟基尿酸。
Biochim Biophys Acta. 1977 Apr 12;481(2):359-63. doi: 10.1016/0005-2744(77)90269-8.

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