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粪臭基过氧化氢的鉴定及其在过氧化物酶催化吲哚 - 3 - 乙酸氧化中的作用。

Identification of skatolyl hydroperoxide and its role in the peroxidase-catalysed oxidation of indol-3-yl acetic acid.

作者信息

Gazarian I G, Lagrimini L M, Mellon F A, Naldrett M J, Ashby G A, Thorneley R N

机构信息

Nitrogen Fixation Laboratory, John Innes Centre, Colney, Norwich NR4 7UH, U.K.

出版信息

Biochem J. 1998 Jul 1;333 ( Pt 1)(Pt 1):223-32. doi: 10.1042/bj3330223.

Abstract

Indol-3-yl acetic acid (IAA, auxin) is a plant hormone whose degradation is a key determinant of plant growth and development. The first evidence for skatolyl hydroperoxide formation during the plant peroxidase-catalysed degradation of IAA has been obtained by electrospray MS. Skatolyl hydroperoxide degrades predominantly non-enzymically to oxindol-3-yl carbinol but in part enzymically into indol-3-yl methanol via a peroxidase cycle in which IAA acts as an electron donor. Skatolyl hydroperoxide is degradable by catalase. Horseradish peroxidase isoenzyme C (HRP-C) and anionic tobacco peroxidase (TOP) exhibit differences in their mechanisms of reaction. The insensitivity of the HRP-C-catalysed reaction to catalase is ascribed to the formation of HRP-C Compound III at the initiation step and its subsequent role in radical propagation. This is in contrast with the TOP-catalysed process in which skatolyl hydroperoxide has a key role. Indol-3-yl aldehyde is produced not via the peroxidase cycle but by catalysis involving ferrous peroxidase. Because indol-3-yl aldehyde is one of the main IAA-derived products identified in planta, we conclude that ferrous peroxidases participate in IAA catalytic transformations in vivo. A general scheme for peroxidase-catalysed IAA oxidation is presented.

摘要

吲哚 - 3 - 乙酸(IAA,生长素)是一种植物激素,其降解是植物生长发育的关键决定因素。通过电喷雾质谱法首次获得了在植物过氧化物酶催化IAA降解过程中形成粪臭基过氧化氢的证据。粪臭基过氧化氢主要通过非酶促方式降解为氧化吲哚 - 3 - 甲醇,但部分通过过氧化物酶循环酶促降解为吲哚 - 3 - 甲醇,其中IAA作为电子供体。粪臭基过氧化氢可被过氧化氢酶降解。辣根过氧化物酶同工酶C(HRP - C)和阴离子烟草过氧化物酶(TOP)在反应机制上存在差异。HRP - C催化反应对过氧化氢酶不敏感归因于在起始步骤形成HRP - C化合物III及其随后在自由基传播中的作用。这与TOP催化过程形成对比,在TOP催化过程中粪臭基过氧化氢起关键作用。吲哚 - 3 - 醛不是通过过氧化物酶循环产生,而是通过亚铁过氧化物酶催化产生。由于吲哚 - 3 - 醛是在植物中鉴定出的主要IAA衍生产物之一,我们得出结论,亚铁过氧化物酶参与体内IAA的催化转化。本文提出了过氧化物酶催化IAA氧化的一般方案。

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