...
【24h】

ELECTROCHEMICAL AND PEROXIDASE O-2-MEDIATED OXIDATION OF INDOLE-3-ACETIC ACID AT PHYSIOLOGICAL PH

机译:生理pH下吲哚-3-乙酸的电化学和过氧化物酶O-2-介导氧化

获取原文
获取原文并翻译 | 示例

摘要

Indole-3-acetic acid (IAA) or an oxidative metabolite is believed to be a growth hormone in plants. IAA is also found in the mammalian central nervous system although its biological roles, if any, are presently unknown. 19 this investigation the electrochemically driven and peroxidase/O-2-mediated oxidation chemistry of IAA at physiological pH has been studied with the primary goal of identifying the major reaction products. Based upon the nature of these products it has been concluded that, at pH 7.4, the anion of IAA is initially oxidized (one-electron) to an acetoxy radical that in part undergoes a second one-electron oxidation/decarboxylation to a carbocation precursor of 3-hydroxymethyl-2-oxindole (1), indole-3-carbinol (13) and 3-methylene-2-oxindole (3). Indole-3-carbinol (13) can be further oxidized (2e, 1H(+)) to the cation of 3-hydroxymethylene indolenine, the precursor of indole-3-aldehyde (2), 3-hydroxy-2-oxidole (8) and 3,3-dihydroxy-2-oxindole (12). Direct decarboxylation of the initial acetoxy radical yields a carbon-centered radical that rapidly dimerizes to a compound that is further oxidized to 3,3'-(1,2-ethanediyl)bis-1 H-indol-2-ol (9) and thence 5,7,12,13-tetrahydro-oxepino[2,3-b:7,6-b']diindole (10). A parallel oxidation pathway involves oxidation of IAA to the cation of 3-methyleneindolenine carboxylic acid, the precursor of 2-oxidole-3-acetic acid (11). Particularly when relatively high concentrations of IAA are electrochemically oxidized for long periods of time, many additional oligomeric and polymeric products are formed. The peroxidase/O-2-mediated oxidation of IAA at pH 7.4 gives exactly the same products formed in the electrochemical reaction suggesting that, in a chemical sense, the enzymatic reaction follows the same pathways as the electrochemical reaction. (C) 1997 Elsevier Science S.A. [References: 55]
机译:吲哚-3-乙酸(IAA)或氧化代谢产物被认为是植物中的生长激素。尽管目前还不知道IAA的生物学作用,但它也存在于哺乳动物中枢神经系统中。 19这项研究已经研究了在生理pH值下IAA的电化学驱动和过氧化物酶/ O-2-介导的氧化化学,其主要目的是鉴定主要反应产物。根据这些产物的性质,可以得出结论,在pH 7.4时,IAA的阴离子最初被氧化(单电子)为乙酰氧基,然后部分进行第二单电子氧化/脱羧为碳酰化前体。 3-羟甲基-2-氧吲哚(1),吲哚-3-甲醇(13)和3-亚甲基-2-氧吲哚(3)。吲哚-3-甲醇(13)可以进一步氧化(2e,1H(+))为3-羟基亚甲基吲哚肾上腺素的阳离子,吲哚-3-醛(2),3-羟基-2-氧化烯(8 )和3,3-二羟基-2-氧吲哚(12)。初始乙酰氧基的直接脱羧产生一个以碳为中心的自由基,该自由基迅速二聚为一种化合物,该化合物进一步被氧化为3,3'-(1,2-乙二基)双-1 H-吲哚-2-醇(9)和因此,有5,7,12,13-四氢-氧杂环庚烷[2,3-b:7,6-b']二吲哚(10)。平行氧化途径涉及将IAA氧化为3-亚甲基吲哚烯羧酸的阳离子,即2-氧化烯-3-乙酸的前体(11)。特别是当相对高浓度的IAA长时间被电化学氧化时,会形成许多其他的低聚物和聚合物产物。在pH 7.4时IAA的过氧化物酶/ O-2-介导的氧化产生了与电化学反应中形成的完全相同的产物,表明从化学意义上讲,酶促反应遵循与电化学反应相同的途径。 (C)1997 Elsevier Science S.A. [参考:55]

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号