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对由8R-氢过氧化十八碳二烯酸经氢过氧化物异构酶形成的8-羟基和10-羟基十八碳二烯酸以及二羟基十八碳二烯酸的立体化学分析。

Steric analysis of 8-hydroxy- and 10-hydroxyoctadecadienoic acids and dihydroxyoctadecadienoic acids formed from 8R-hydroperoxyoctadecadienoic acid by hydroperoxide isomerases.

作者信息

Garscha Ulrike, Oliw Ernst H

机构信息

Department of Pharmaceutical Biosciences, Biomedical Center, Uppsala University, SE-751 24 Uppsala, Sweden.

出版信息

Anal Biochem. 2007 Aug 15;367(2):238-46. doi: 10.1016/j.ab.2007.04.045. Epub 2007 May 3.

Abstract

8-Hydroxyoctadeca-9Z,12Z-dienoic acid (8-HODE) and 10-hydroxyoctadeca-8E,12Z-octadecadienoic acid (10-HODE) are produced by fungi, e.g., 8R-HODE by Gaeumannomyces graminis (take-all of wheat) and Aspergillus nidulans, 10S-HODE by Lentinula edodes, and 10R-HODE by Epichloe typhina. Racemic [8-(2)H]8-HODE and [10-(2)H]10-HODE were prepared by oxidation of 8- and 10-HODE to keto fatty acids by Dess-Martin periodinane followed by reduction to hydroxy fatty acids with NaB(2)H(4). The hydroxy fatty acids were analyzed by chiral phase high-performance liquid chromatography-tandem mass spectrometry (HPLC-MS/MS) with 8R-HODE and 10S-HODE as standards. 8R-HODE eluted after 8S-HODE on silica with cellulose tribenzoate (Chiralcel OB-H), and 10S-HODE eluted before 10R-HODE on silica with an aromatic chiral selector (Reprosil Chiral-NR). 5S,8R-Dihydroxyoctadeca-9Z,12Z-dienoic acid (5S,8R-DiHODE) is formed from 18:2n-6 by A. nidulans and 8R,11S-dihydroxyoctadeca-9Z,12Z-dienoic acid (8R,11S-DiHODE) by Agaricus bisporus. 8R-Hydroperoxylinoleic acid (8R-HPODE) can be transformed to 5S,8R-DiHODE and 8R,11-DiHODE by Aspergillus spp., and 8R,13-dihydroxy-9Z,11E-dienoic acid (8R,13-DiHODE) can also be detected. We prepared racemic [5,8-(2)H(2)]5,8- and [8,11-(2)H(2)]8,11-DiHODE by oxidation and reduction as above and 8R,13S- and 8R,13R-DiHODE by oxidation of 8R-HODE by S and R lipoxygenases. The diastereoisomers were separated and identified by normal phase HPLC-MS/MS analysis. We used the methods for steric analysis of fungal oxylipins. Aspergillus spp. produced 8R-HODE (>95% R), 10R-HODE (>70% R), and 5S,8R- and 8R,11S-DiHODE with high stereoselectivity (>95%), whereas 8R,13-DiHODE was likely formed by nonenzymatic hydrolysis of 8R,11S-DiHODE.

摘要

8-羟基-9Z,12Z-十八碳二烯酸(8-HODE)和10-羟基-8E,12Z-十八碳二烯酸(10-HODE)由真菌产生,例如禾顶囊壳菌(小麦全蚀病菌)和构巢曲霉产生8R-HODE,香菇产生10S-HODE,大孢虫草产生10R-HODE。通过用戴斯-马丁高碘烷将8-和10-HODE氧化为酮脂肪酸,然后用NaB(2)H(4)还原为羟基脂肪酸,制备了外消旋[8-(2)H]8-HODE和[10-(2)H]10-HODE。以8R-HODE和10S-HODE为标准品,通过手性相高效液相色谱-串联质谱法(HPLC-MS/MS)分析羟基脂肪酸。在涂有三苯甲酸纤维素的硅胶柱(手性拆分柱OB-H)上,8R-HODE在8S-HODE之后洗脱,在涂有芳香族手性选择剂的硅胶柱(Reprosil手性-NR)上,10S-HODE在10R-HODE之前洗脱。5S,8R-二羟基-9Z,12Z-十八碳二烯酸(5S,8R-DiHODE)由构巢曲霉从18:2n-6生成,8R,11S-二羟基-9Z,12Z-十八碳二烯酸(8R,11S-DiHODE)由双孢蘑菇生成。曲霉属真菌可将8R-氢过氧化亚油酸(8R-HPODE)转化为5S,8R-DiHODE和8R,11-DiHODE,还可检测到8R,13-二羟基-9Z,11E-二烯酸(8R,13-DiHODE)。我们通过上述氧化和还原方法制备了外消旋[5,8-(2)H(2)]5,8-和[8,11-(2)H(2)]8,11-DiHODE,通过S和R脂氧合酶氧化8R-HODE制备了8R,13S-和8R,13R-DiHODE。通过正相HPLC-MS/MS分析分离并鉴定了非对映异构体。我们采用了真菌氧化脂质的立体化学分析方法。曲霉属真菌产生的8R-HODE(R构型>95%)、10R-HODE(R构型>70%)以及5S,8R-和8R,11S-DiHODE具有高立体选择性(>95%),而8R,13-DiHODE可能是由8R,11S-DiHODE的非酶促水解形成的。

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