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毛茛属植物中新的二乙烯基醚氧化脂质的生物合成。

Biosynthesis of new divinyl ether oxylipins in Ranunculus plants.

作者信息

Hamberg Mats

机构信息

Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.

出版信息

Lipids. 2002 Apr;37(4):427-33. doi: 10.1007/s1145-002-0911-5.

Abstract

[1-14C]Linolenic acid was incubated with homogenates of leaves from the aquatic plants Ranunculus lingua (greater spearwort) or R. peltatus (pond water-crowfoot). Analysis by reversed-phase high-performance liquid radiochromatography demonstrated the formation of a new divinyl ether FA, i.e., 12-[1'(E),3'(Z)-hexadienyloxyl-9(Z), 11 (Z)-dodecadienoic acid [11 (Z)-etherolenic acid] as well as a smaller proportion of omega5(Z)-etherolenic acid previously identified in terrestrial Ranunculus plants. The same divinyl ethers were formed upon incubation of 13(S)-hydroperoxy-9(Z),11 (E),15(Z)-octadecatrienoic acid, a lipoxygenase metabolite of linolenic acid, whereas the isomeric hydroperoxide, 9(S)-hydroperoxy-10(E),12(Z),15(Z)-octadecatrienoic acid, was not converted into divinyl ethers in R. lingua or R. peltatus. Incubation of [1-14C]linoleic acid or 13(S)-hydroperoxy-9(Z), 11 (E)-octadecadienoic acid produced the divinyl ether 12-[1'(E)-hexenyloxyl-9(Z),11(Z)-dodecadienoic acid [11(Z)-etheroleic acid] and a smaller amount of omega5(Z)-etheroleic acid. The experiments demonstrated the existence in R. lingua and R. peltatus of a divinyl ether synthase distinct from those previously encountered in higher plants and algae.

摘要

将[1-¹⁴C]亚麻酸与水生植物毛茛(大石龙芮)或盾叶毛茛(水毛茛)的叶片匀浆一起孵育。通过反相高效液相放射性色谱分析表明,形成了一种新的二乙烯基醚脂肪酸,即12-[1'(E),3'(Z)-己二烯氧基]-9(Z),11(Z)-十二碳二烯酸[11(Z)-醚亚麻酸],以及在陆生毛茛植物中先前已鉴定出的少量ω5(Z)-醚亚麻酸。亚麻酸的脂氧合酶代谢产物13(S)-氢过氧-9(Z),11(E),15(Z)-十八碳三烯酸孵育时也形成了相同的二乙烯基醚,而异构体氢过氧化物9(S)-氢过氧-10(E),12(Z),15(Z)-十八碳三烯酸在毛茛或盾叶毛茛中未转化为二乙烯基醚。[1-¹⁴C]亚油酸或13(S)-氢过氧-9(Z),11(E)-十八碳二烯酸孵育产生了二乙烯基醚12-[1'(E)-己烯氧基]-9(Z),11(Z)-十二碳二烯酸[11(Z)-醚油酸]和少量的ω5(Z)-醚油酸。这些实验证明了毛茛和盾叶毛茛中存在一种不同于先前在高等植物和藻类中发现的二乙烯基醚合酶。

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