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首页> 外文期刊>Lipids >The Fatty Acid 8,11-Diol Synthase of Aspergillus fumigatus is Inhibited by Imidazole Derivatives and Unrelated to PpoB
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The Fatty Acid 8,11-Diol Synthase of Aspergillus fumigatus is Inhibited by Imidazole Derivatives and Unrelated to PpoB

机译:烟曲霉的脂肪酸8,11-二醇合酶被咪唑衍生物抑制,与PpoB无关

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摘要

(8R)-Hydroperoxy-(9Z,12Z)-octadecadienoic acid (8-HPODE) is formed by aspergilli as an intermediate in biosynthesis of oxylipins with effects on sporulation. 8-HPODE is transformed by separate diol synthases to (5S,8R)-dihydroxy- and (8R,11S)-dihydroxy-(9Z,12Z)-octadecadienoic acids (5,8- and 8,11-DiHODE). The former is formed by the cytochrome P450 (P450) domain of 5,8-linoleate diol synthase (5,8-LDS or PpoA). Our aim was to characterize the 8,11-diol synthase of Aspergillus fumigatus, which is prominent in many strains. The 8,11-diol synthase was soluble and had a larger molecular size (100 kDa) than most P450. Miconazole, ketoconazole, and 1-benzylimidazole, classical inhibitors of P450, reduced the biosynthesis of 8,11-DiHODE from 8-HPODE (apparent IC50 values ~0.8, ~5, and ~0.6 μM, respectively), but did not inhibit the biosynthesis of 5,8-DiHODE. Analysis of hydroperoxides of regioisomeric C18 and C20 fatty acids showed that the 8,11-diol synthase was specific for certain hydroperoxides with R configuration. The suprafacial hydrogen abstraction and oxygen insertion at C-11 of 8-HPODE was associated with a small deuterium kinetic isotope effect (H k cat/D k cat ~1.5), consistent with P450-catalyzed oxidation. The genome of A. fumigatus contains over 70 P450 sequences. The reaction mechanism, size, and solubility of 8,11-diol synthase pointed to PpoB, a homologue of 5,8-LDS, as a possible candidate of this activity. Gene deletion of ppoB of A. fumigatus strains AF:∆ku80 and J272 did not inhibit biosynthesis of 8,11-DiHODE and recombinant PpoB appeared to lack diol synthase activity. We conclude that 8,11-DiHODE is formed from 8-HPODE by a soluble and substrate-specific 8,11-diol synthase with catalytic characteristics of class III P450.
机译:(8R)-羟基过氧-(9Z,12Z)-十八碳二烯酸(8-HPODE)是由曲霉菌形成的,作为生物合成羟基磷脂的中间体,对孢子形成有影响。通过单独的二醇合酶将8-HPODE转化为(5S,8R)-二羟基-和(8R,11S)-二羟基-(9Z,12Z)-十八碳二烯酸(5,8-和8,11-DiHODE)。前者由5,8-亚油酸酯二醇合酶(5,8-LDS或PpoA)的细胞色素P450(P450)结构域形成。我们的目标是鉴定烟曲霉的8,11-二醇合酶,该酶在许多菌株中均很突出。 8,11-二醇合酶是可溶的,并且比大多数P450具有更大的分子大小(> 100 kDa)。经典的P450抑制剂咪康唑,酮康唑和1-苄基咪唑减少了8-HPODE的8,11-DiHODE的生物合成(表观IC50值分别为〜0.8,〜5和〜0.6μM),但没有抑制5,8-二HODE的生物合成。对区域异构体C18 和C20 脂肪酸的氢过氧化物的分析表明,8,11-二醇合酶对某些具有R构型的氢过氧化物具有特异性。 8-HPODE的表面氢提取和C-11处的氧插入与较小的氘动力学同位素效应有关(H k cat / D k cat 〜1.5 ),与P450催化的氧化作用一致。烟曲霉的基因组包含超过70个P450序列。 8,11-二醇合酶的反应机理,大小和溶解度表明,PpoB(5,8-LDS的同系物)可能是这种活性的候选者。烟曲霉AF:∆ku80和J272菌株ppoB的基因缺失未抑制8,11-DiHODE的生物合成,重组PpoB似乎缺乏二醇合酶活性。我们得出的结论是,8,11-DiHODE是由8-HPODE通过具有III类P450催化特性的可溶性底物特异性8,11-二醇合酶形成的。

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