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可可毛色二孢菌的亚麻酸9R-双加氧酶和丙二烯氧化物合酶活性

Linolenate 9R-dioxygenase and allene oxide synthase activities of Lasiodiplodia theobromae.

作者信息

Jernerén Fredrik, Eng Felipe, Hamberg Mats, Oliw Ernst H

机构信息

Department of Pharmaceutical Biosciences, Uppsala Biomedical Center, Uppsala University, P.O. Box 591, 75124 Uppsala, Sweden.

出版信息

Lipids. 2012 Jan;47(1):65-73. doi: 10.1007/s11745-011-3622-5. Epub 2011 Nov 3.

Abstract

Jasmonic acid (JA) is synthesized from linolenic acid (18:3n-3) by sequential action of 13-lipoxygenase, allene oxide synthase (AOS), and allene oxide cyclase. The fungus Lasiodiplodia theobromae can produce large amounts of JA and was recently reported to form the JA precursor 12-oxophytodienoic acid. The objective of our study was to characterize the fatty acid dioxygenase activities of this fungus. Two strains of L. theobromae with low JA secretion (0.2 mg/L medium) oxygenated 18:3n-3 to 5,8-dihydroxy-9Z,12Z,15Z-octadecatrienoic acid as well as 9R-hydroperoxy-10E,12Z,15Z-octadecatrienoic acid, which was metabolized by an AOS activity into 9-hydroxy-10-oxo-12Z,15Z-octadecadienoic acid. Analogous conversions were observed with linoleic acid (18:2n-6). Studies using [11S-(2)H]18:2n-6 revealed that the putative 9R-dioxygenase catalyzed stereospecific removal of the 11R hydrogen followed by suprafacial attack of dioxygen at C-9. Mycelia from these strains of L. theobromae contained 18:2n-6 as the major polyunsaturated acid but lacked 18:3n-3. A third strain with a high secretion of JA (200 mg/L) contained 18:3n-3 as a major fatty acid and produced 5,8-dihydroxy-9Z,12Z,15Z-octadecatrienoic acid from added 18:3n-3. This strain also lacked the JA biosynthetic enzymes present in higher plants.

摘要

茉莉酸(JA)由亚麻酸(18:3n-3)通过13-脂氧合酶、丙二烯氧化物合酶(AOS)和丙二烯氧化物环化酶的顺序作用合成。真菌可可毛色二孢能产生大量JA,最近有报道称其能形成JA前体12-氧代植物二烯酸。我们研究的目的是表征这种真菌的脂肪酸双加氧酶活性。两株JA分泌量低(约0.2 mg/L培养基)的可可毛色二孢菌株将18:3n-3氧化为5,8-二羟基-9Z,12Z,15Z-十八碳三烯酸以及9R-氢过氧基-10E,12Z,15Z-十八碳三烯酸,后者通过AOS活性代谢为9-羟基-10-氧代-12Z,15Z-十八碳二烯酸。用亚油酸(18:2n-6)也观察到了类似的转化。使用[11S-(2)H]18:2n-6的研究表明,假定的9R-双加氧酶催化11R氢的立体特异性去除,随后双原子氧在C-9处进行同面攻击。这些可可毛色二孢菌株的菌丝体含有18:2n-6作为主要多不饱和酸,但缺乏18:3n-3。第三株JA分泌量高(约200 mg/L)的菌株含有18:3n-3作为主要脂肪酸,并从添加的18:3n-3产生5,8-二羟基-9Z,12Z,15Z-十八碳三烯酸。该菌株也缺乏高等植物中存在的JA生物合成酶。

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