Department of Biological Sciences, University of North Texas, Center for Plant Lipid Research, Denton, Texas 76203.
Plant Cell. 2013 Oct;25(10):3824-40. doi: 10.1105/tpc.113.119024. Epub 2013 Oct 22.
N-Acylethanolamines (NAEs) are fatty-acid derivatives with potent biological activities in a wide range of eukaryotic organisms. Polyunsaturated NAEs are among the most abundant NAE types in seeds of Arabidopsis thaliana, and they can be metabolized by either fatty acid amide hydrolase (FAAH) or by lipoxygenase (LOX) to low levels during seedling establishment. Here, we identify and quantify endogenous oxylipin metabolites of N-linolenoylethanolamine (NAE 18:3) in Arabidopsis seedlings and show that their levels were higher in faah knockout seedlings. Quantification of oxylipin metabolites in lox mutants demonstrated altered partitioning of NAE 18:3 into 9- or 13-LOX pathways, and this was especially exaggerated when exogenous NAE was added to seedlings. When maintained at micromolar concentrations, NAE 18:3 specifically induced cotyledon bleaching of light-grown seedlings within a restricted stage of development. Comprehensive oxylipin profiling together with genetic and pharmacological interference with LOX activity suggested that both 9-hydroxy and 13-hydroxy linolenoylethanolamides, but not corresponding free fatty-acid metabolites, contributed to the reversible disruption of thylakoid membranes in chloroplasts of seedling cotyledons. We suggest that NAE oxylipins of linolenic acid represent a newly identified, endogenous set of bioactive compounds that may act in opposition to progression of normal seedling development and must be depleted for successful establishment.
N-酰基乙醇胺(NAE)是脂肪酸衍生物,在广泛的真核生物中具有强大的生物学活性。多不饱和 NAE 是拟南芥种子中最丰富的 NAE 类型之一,它们可以被脂肪酸酰胺水解酶(FAAH)或脂氧合酶(LOX)代谢为低水平,在幼苗建立期间。在这里,我们鉴定并定量了拟南芥幼苗中 N-亚麻酰乙醇胺(NAE 18:3)的内源性氧化脂代谢物,并表明在 faah 敲除幼苗中的水平更高。LOX 突变体中氧化脂代谢物的定量表明,NAE 18:3 向 9-或 13-LOX 途径的分配发生改变,当将外源 NAE 添加到幼苗中时,这种改变尤其夸张。当维持在微摩尔浓度时,NAE 18:3 特异性诱导光生长幼苗子叶的漂白,处于发育的受限阶段。综合氧化脂谱分析以及 LOX 活性的遗传和药理学干扰表明,9-羟基和 13-羟基亚麻酰乙醇胺,而不是相应的游离脂肪酸代谢物,有助于幼苗子叶叶绿体中类囊体膜的可逆破坏。我们认为,亚麻酸的 NAE 氧化脂是一种新发现的、内源性的生物活性化合物,可能与正常幼苗发育的进展相反,必须耗尽才能成功建立。