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7,8- 和 5,8-亚油酸二醇合酶通过不同的酰胺残基支持氧-氧键的异裂。

7,8- and 5,8-Linoleate diol synthases support the heterolytic scission of oxygen-oxygen bonds by different amide residues.

机构信息

Department of Pharmaceutical Biosciences, Division of Biochemical Pharmacology, Uppsala Biomedical Center, Uppsala University, SE-75124 Uppsala, Sweden.

出版信息

Arch Biochem Biophys. 2013 Nov 1;539(1):87-91. doi: 10.1016/j.abb.2013.09.010. Epub 2013 Sep 20.

Abstract

Linoleate diol synthases (LDS) are fungal dioxygenase-cytochrome P450 fusion enzymes. They oxidize 18:2n-6 sequentially to 8R-hydroperoxylinoleic acid (8R-HPODE) and 7S,8S- or 5S,8R-dihydroxylinoleic acids (DiHODE) by intramolecular oxygen transfer. The P450 domains contain a conserved sequence, Ala-Asn-Gln-Xaa-Gln, presumably located in the I-helices. The Asn938Leu replacement of 7,8-LDS of Gaeumannomyces graminis virtually abolished and the Asn938Asp and Asn938Gln replacements reduced the hydroperoxide isomerase activity. Gln941Leu and Gln941Glu substitutions had little effects. Replacements of the homologous Asn(887) and Gln(890) residues of 5,8-LDS of Aspergillus fumigatus yielded the opposite results. Asn887Leu and Asn887Gln of 5,8-LDS retained 5,8-DiHODE as the main metabolite with an increased formation of 6,8- and 8,11-DiHODE, whereas Gln890Leu almost abolished the 5,8-LDS activity. Replacement of Gln(890) with Glu also retained 5,8-DiHODE as the main product, but shifted oxygenation from C-5 to C-7 and C-11 and to formation of epoxyalcohols by homolytic scission of 8R-HPODE. P450 hydroxylases usually contain an "acid-alcohol" pair in the I-helices for the heterolytic scission of O2 and formation of compound I (Por(+) Fe(IV)=O) and water. The function of the acid-alcohol pair appears to be replaced by two different amide residues, Asn(938) of 7,8-LDS and Gln(890) of 5,8-LDS, for heterolysis of 8R-HPODE to generate compound I.

摘要

亚油酸二醇合酶(LDS)是真菌双加氧酶-细胞色素 P450 融合酶。它们通过分子内氧转移将 18:2n-6 依次氧化为 8R-氢过氧亚油酸(8R-HPODE)和 7S、8S-或 5S、8R-二羟基亚油酸(DiHODE)。P450 结构域包含一个保守序列 Ala-Asn-Gln-Xaa-Gln,推测位于 I 螺旋中。禾顶囊壳菌 7,8-LDS 的 Asn938Leu 替换几乎完全消除了加氧酶活性,Asn938Asp 和 Asn938Gln 替换降低了氢过氧化物异构酶活性。Gln941Leu 和 Gln941Glu 取代的影响较小。烟曲霉 5,8-LDS 的同源 Asn(887)和 Gln(890)残基的替换产生了相反的结果。5,8-LDS 的 Asn887Leu 和 Asn887Gln 保留了 5,8-DiHODE 作为主要代谢物,同时增加了 6,8-和 8,11-DiHODE 的形成,而 Gln890Leu 几乎完全消除了 5,8-LDS 活性。Gln(890)被 Glu 替换也保留了 5,8-DiHODE 作为主要产物,但通过 8R-HPODE 的均裂裂解将氧转移到 C-5、C-7 和 C-11 并形成环氧化醇。P450 羟化酶通常在 I 螺旋中包含一个“酸-醇”对,用于 O2 的异裂和化合物 I(Por(+)Fe(IV)=O)和水的形成。酸-醇对的功能似乎被 7,8-LDS 的 Asn(938)和 5,8-LDS 的 Gln(890)这两个不同的酰胺残基取代,用于 8R-HPODE 的异裂生成化合物 I。

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