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首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Reaction mechanism of 5,8-linoleate diol synthase, 10R-dioxygenase, and 8,11-hydroperoxide isomerase of Aspergillus clavatus.
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Reaction mechanism of 5,8-linoleate diol synthase, 10R-dioxygenase, and 8,11-hydroperoxide isomerase of Aspergillus clavatus.

机译:曲霉曲霉5,8-亚油酸酯二醇合酶,10R-双加氧酶和8,11-氢过氧化物异构酶的反应机理。

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摘要

Aspergilli express fusion proteins of an animal haem peroxidase domain with fatty acid dioxygenase (DOX) activity ( approximately 600 amino acids) and a functional or non-functional hydroperoxide isomerase/cytochrome P450 domain ( approximately 500 amino acids with EXXR and GPHXCLG motifs). 5,8-Linoleate diol synthases (LDS; ppoA) and 10R-DOX (ppoC) of Aspergillusnidulans and A. fumigatus belong to this group. Our objective was to determine the oxylipins formed from linoleic acid by A. clavatus and their mechanism of biosynthesis. A. clavatus oxidized linoleic acid to (8R)-hydroperoxylinoleic acid (8R-HPODE), (10R)-hydroperoxy-8(E),12(Z)-octadecadienoic acid (10R-HPODE), and to (5S,8R)-dihydroxy- and (8R,11S)-dihydroxylinoleic acids (DiHODE) as major products. This occurred by abstraction of the pro-S hydrogen at C-8 and antarafacial dioxygenation at C-8 or at C-10 with double bond migration. 8R-HPODE was then isomerized to 5S,8R-DiHODE and to 8R,11S-DiHODE by abstraction of the pro-S hydrogens at C-5 and C-11 of 8R-HPODE, respectively, followed by suprafacial oxygenation. The genome of A. clavatus codes for two enzymes, which can be aligned with >65% amino acid identity to 10R-DOX and 5,8-LDS, respectively. The 5,8-LDS homologue likely forms and isomerizes 8R-HPODE to 5S,8R-DiHODE. A third gene (ppoB) codes for a protein which carries a serine residue at the cysteine position of the P450 motif. This Cys to Ser replacement is known to abolish P450 2B4 catalysis and the hydroperoxide isomerase activity of 5,8-LDS, suggesting that ppoB of A. clavatus may not be involved in the biosynthesis of 8R,11S-DiHODE.
机译:Aspergilli表达具有血红素加氧酶(DOX)活性(约600个氨基酸)和功能性或非功能性氢过氧化物异构酶/细胞色素P450结构域(约500个具有EXXR和GPHXCLG基序的氨基酸)的血红素过氧化物酶结构域的融合蛋白。曲霉和烟曲霉的5,8-亚油酸酯二醇合酶(LDS; ppoA)和10R-DOX(ppoC)属于该组。我们的目标是确定由A. clavatus从亚油酸形成的脂环素及其生物合成机理。甲曲霉将亚油酸氧化为(8R)-氢过氧亚油酸(8R-HPODE),(10R)-氢过氧-8(E),12(Z)-十八碳二烯酸(10R-HPODE)和(5S,8R) -二羟基和(8R,11S)-二羟基亚油酸(DiHODE)为主要产品。这是通过在C-8处提取pro-S氢,以及在C-8或C-10处通过双键迁移进行前表面双加氧而发生的。然后通过分别在8R-HPODE的C-5和C-11处提取pro-S氢,然后进行表面氧合,将8R-HPODE异构化为5S,8R-DiHODE和8R,11S-DiHODE。蛤lava曲霉的基因组编码两种酶,它们分别与10R-DOX和5,8-LDS的氨基酸同一性> 65%。 5,8-LDS同源物可能形成8R-HPODE并将其异构化为5S,8R-DiHODE。第三个基因(ppoB)编码一种蛋白质,该蛋白质在P450基序的半胱氨酸位置带有一个丝氨酸残基。已知这种从Cys到Ser的取代可废除P450 2B4催化作用和5,8-LDS的氢过氧化物异构酶活性,这表明蛤lava曲霉的ppoB可能不参与8R,11S-DiHODE的生物合成。

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