首页> 美国卫生研究院文献>Journal of Lipid Research >Discovery of a linoleate 9S-dioxygenase and an allene oxide synthase in a fusion protein of Fusarium oxysporum
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Discovery of a linoleate 9S-dioxygenase and an allene oxide synthase in a fusion protein of Fusarium oxysporum

机译:在尖孢镰刀菌融合蛋白中发现亚油酸酯9S-双加氧酶和氧化烯合酶

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摘要

Fusarium oxysporum is a devastating plant pathogen that oxidizes C18 fatty acids sequentially to jasmonates. The genome codes for putative dioxygenase (DOX)-cytochrome P450 (CYP) fusion proteins homologous to linoleate diol synthases (LDSs) and the allene oxide synthase (AOS) of Aspergillus terreus, e.g., FOXB_01332. Recombinant FOXB_01332 oxidized 18:2n-6 to 9S-hydroperoxy-10(E),12(Z)-octadecadienoic acid by hydrogen abstraction and antarafacial insertion of molecular oxygen and sequentially to an allene oxide, 9S(10)-epoxy-10,12(Z)-octadecadienoic acid, as judged from nonenzymatic hydrolysis products (α- and γ-ketols). The enzyme was therefore designated 9S-DOX-AOS. The 9S-DOX activity oxidized C18 and C20 fatty acids of the n-6 and n-3 series to hydroperoxides at the n-9 and n-7 positions, and the n-9 hydroperoxides could be sequentially transformed to allene oxides with only a few exceptions. The AOS activity was stereospecific for 9- and 11-hydroperoxides with S configurations. FOXB_01332 has acidic and alcoholic residues, Glu946-Val-Leu-Ser949, at positions of crucial Asn and Gln residues (Asn-Xaa-Xaa-Gln) of the AOS and LDS. Site-directed mutagenesis studies revealed that FOXB_01332 and AOS of A. terreus differ in catalytically important residues suggesting that AOS of A. terreus and F. oxysporum belong to different subfamilies. FOXB_01332 is the first linoleate 9-DOX with homology to animal heme peroxidases and the first 9-DOX-AOS fusion protein.
机译:尖孢镰刀菌(Fusarium oxysporum)是一种破坏性植物病原体,可将C18脂肪酸依次氧化为茉莉酸盐。该基因组编码与土曲霉的亚油酸二醇合酶(LDSs)和氧化烯合酶(AOS)同源的推定的双加氧酶(DOX)-细胞色素P450(CYP)融合蛋白,例如FOXB_01332。重组FOXB_01332通过氢的提取和分子氧的对反插入将18:2n-6氧化为9S-hydroperoxy-10(E),12(Z)-十八碳二烯酸并依次氧化为烯丙基氧化物9S(10)-epoxy-10,由非酶水解产物(α-和γ-酮醇)判断为12(Z)-十八碳二烯酸。因此将该酶命名为9S-DOX-AOS。 9S-DOX活性将n-6和n-3系列的C18和C20脂肪酸在n-9和n-7位置氧化为氢过氧化物,而n-9氢过氧化物可以仅用一个很少有例外。 AOS活性对S构型的9-和11-氢过氧化物具有立体定向性。 FOXB_01332在植物的关键Asn和Gln残基(Asn-Xaa-Xaa-Gln)位置具有酸性和酒精性残基Glu 946 -Val-Leu-Ser 949 。 AOS和LDS。定点诱变研究表明,FOXB_01332和土壤曲霉的AOS在重要的催化残基上有所不同,这表明土壤曲霉和oxysporum的AOS属于不同的亚家族。 FOXB_01332是第一个与动物血红素过氧化物酶同源的亚油酸酯9-DOX和第一个9-DOX-AOS融合蛋白。

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