Suppr超能文献

鉴定烟曲霉发育所需的双加氧酶。产物、立体化学及反应机制的研究。

Identification of dioxygenases required for Aspergillus development. Studies of products, stereochemistry, and the reaction mechanism.

作者信息

Garscha Ulrike, Jernerén Fredrik, Chung DaWoon, Keller Nancy P, Hamberg Mats, Oliw Ernst H

机构信息

Department of Pharmaceutical Bioscience, Uppsala Biomedical Center, SE-75124 Uppsala, Sweden.

出版信息

J Biol Chem. 2007 Nov 30;282(48):34707-18. doi: 10.1074/jbc.M705366200. Epub 2007 Sep 28.

Abstract

Aspergillus sp. contain ppoA, ppoB, and ppoC genes, which code for fatty acid oxygenases with homology to fungal linoleate 7,8-diol synthases (7,8-LDS) and cyclooxygenases. Our objective was to identify these enzymes, as ppo gene replacements show critical developmental aberrancies in sporulation and pathogenicity in the human pathogen Aspergillus fumigatus and the genetic model Aspergillus nidulans. The PpoAs of A. fumigatus and A. nidulans were identified as (8R)-dioxygenases with hydroperoxide isomerase activity, designated 5,8-LDS. 5,8-LDS transformed 18:2n-6 to (8R)-hydroperoxyoctadecadienoic acid ((8R)-HPODE) and (5S,8R)-dihydroxy-9Z,12Z-octadecadienoic acid ((5S,8R)-DiHODE). We also detected 8,11-LDS in A. fumigatus and (10R)-dioxygenases in both Aspergilli. The diol synthases oxidized [(8R)-(2)H]18:2n-6 to (8R)-HPODE with retention of the deuterium label, suggesting antarafacial hydrogen abstraction and insertion of molecular oxygen. Experiments with stereospecifically deuterated 18:2n-6 showed that (8R)-HPODE was isomerized by 5,8- and 8,11-LDS to (5S,8R)-DiHODE and to (8R,11S)-dihydroxy-9Z,12Z-octadecadienoic acid, respectively, by suprafacial hydrogen abstraction and oxygen insertion at C-5 and C-11. PpoCs were identified as (10R)-dioxygenases, which catalyzed abstraction of the pro-S hydrogen at C-8 of 18:2n-6, double bond migration, and antafacial insertion of molecular oxygen with formation of (10R)-hydroxy-8E,12Z-hydroperoxyoctadecadienoic acid ((10R)-HPODE). Deletion of ppoA led to prominent reduction of (8R)-H(P)ODE and complete loss of (5S,8R)-DiHODE biosynthesis, whereas biosynthesis of (10R)-HPODE was unaffected. Deletion of ppoC caused biosynthesis of traces of racemic 10-HODE but did not affect the biosynthesis of other oxylipins. We conclude that ppoA of Aspergillus sp. may code for 5,8-LDS with catalytic similarities to 7,8-LDS and ppoC for linoleate (10R)-dioxygenases. Identification of these oxygenases and their products will provide tools for analyzing the biological impact of oxylipin biosynthesis in Aspergilli.

摘要

曲霉属真菌含有ppoA、ppoB和ppoC基因,这些基因编码的脂肪酸加氧酶与真菌亚油酸7,8 - 二醇合酶(7,8 - LDS)和环氧化酶具有同源性。我们的目标是鉴定这些酶,因为ppo基因的替换在人类病原体烟曲霉和遗传模型构巢曲霉的孢子形成和致病性方面显示出关键的发育异常。烟曲霉和构巢曲霉的PpoA被鉴定为具有氢过氧化物异构酶活性的(8R)-双加氧酶,命名为5,8 - LDS。5,8 - LDS将18:2n - 6转化为(8R)-氢过氧化十八碳二烯酸((8R)-HPODE)和(5S,8R)-二羟基-9Z,12Z - 十八碳二烯酸((5S,8R)-DiHODE)。我们还在烟曲霉中检测到了8,11 - LDS,在两种曲霉中都检测到了(10R)-双加氧酶。二醇合酶将[(8R)-(2)H]18:2n - 6氧化为(8R)-HPODE,并保留了氘标记,表明发生了反式面氢提取和分子氧插入。用立体特异性氘代的18:2n - 6进行的实验表明,(8R)-HPODE通过5,8 - 和8,11 - LDS分别通过在C - 5和C - 11处的顺式面氢提取和氧插入异构化为(5S,8R)-DiHODE和(8R,11S)-二羟基-9Z,12Z - 十八碳二烯酸((8R,11S)-DiHODE)。PpoC被鉴定为(10R)-双加氧酶,它催化18:2n - 6的C - 8位上的前-S氢的提取、双键迁移以及分子氧的反式面插入,形成(10R)-羟基-8E,12Z - 氢过氧化十八碳二烯酸((10R)-HPODE)。ppoA的缺失导致(8R)-H(P)ODE显著减少,(5S,8R)-DiHODE生物合成完全丧失,而(10R)-HPODE的生物合成未受影响。ppoC的缺失导致痕量外消旋10 - HODE的生物合成,但不影响其他氧化脂质的生物合成。我们得出结论,曲霉属真菌的ppoA可能编码与7,8 - LDS具有催化相似性的5,8 - LDS,而ppoC编码亚油酸(10R)-双加氧酶。鉴定这些加氧酶及其产物将为分析曲霉中氧化脂质生物合成的生物学影响提供工具。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验