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拟南芥中 N-酰基磷酰乙醇胺分子种类的脂质组学分析表明 N-酰基乙醇胺的反馈调节。

Lipidomic analysis of N-acylphosphatidylethanolamine molecular species in Arabidopsis suggests feedback regulation by N-acylethanolamines.

机构信息

Department of Biological Sciences, East Tennessee State University, PO Box 70703, Johnson City, TN 37614, USA.

出版信息

Planta. 2012 Sep;236(3):809-24. doi: 10.1007/s00425-012-1669-z. Epub 2012 Jun 7.

Abstract

N-Acylphosphatidylethanolamine (NAPE) and its hydrolysis product, N-acylethanolamine (NAE), are minor but ubiquitous lipids in multicellular eukaryotes. Various physiological processes are severely affected by altering the expression of fatty acid amide hydrolase (FAAH), an NAE-hydrolyzing enzyme. To determine the effect of altered FAAH activity on NAPE molecular species composition, NAE metabolism, and general membrane lipid metabolism, quantitative profiles of NAPEs, NAEs, galactolipids, and major and minor phospholipids for FAAH mutants of Arabidopsis were determined. The NAPE molecular species content was dramatically affected by reduced FAAH activity and elevated NAE content in faah knockouts, increasing by as much as 36-fold, far more than the NAE content, suggesting negative feedback regulation of phospholipase D-mediated NAPE hydrolysis by NAE. The N-acyl composition of NAPE remained similar to that of NAE, suggesting that the NAPE precursor pool largely determines NAE composition. Exogenous NAE 12:0 treatment elevated endogenous polyunsaturated NAE and NAPE levels in seedlings; NAE levels were increased more in faah knockouts than in wild-type or FAAH overexpressors. Treated seedlings with elevated NAE and NAPE levels showed impaired growth and reduced galactolipid synthesis by the "prokaryotic" (i.e., plastidic), but not the "eukaryotic" (i.e., extraplastidic), pathway. Overall, our data provide new insights into the regulation of NAPE-NAE metabolism and coordination of membrane lipid metabolism and seedling development.

摘要

N-酰基乙醇胺(NAPE)及其水解产物 N-酰基乙醇胺(NAE)是真核多细胞生物中含量较少但普遍存在的脂质。通过改变 NAE 水解酶脂肪酸酰胺水解酶(FAAH)的表达,各种生理过程受到严重影响。为了确定改变 FAAH 活性对 NAPE 分子种类组成、NAE 代谢和一般膜脂代谢的影响,测定了拟南芥 FAAH 突变体的 NAPEs、NAEs、半乳糖脂和主要和次要磷脂的定量谱。在 faah 敲除体中,FAAH 活性降低和 NAE 含量升高显著影响 NAPE 分子种类含量,增加高达 36 倍,远高于 NAE 含量,表明 NAE 通过 NAPE 水解酶磷脂酶 D 介导的负反馈调节 NAPE 水解。NAPE 的 N-酰基组成与 NAE 相似,表明 NAPE 前体池在很大程度上决定了 NAE 的组成。外源性 NAE 12:0 处理可提高幼苗内源多不饱和 NAE 和 NAPE 水平;在 faah 敲除体中,NAE 水平的升高高于野生型或 FAAH 过表达体。具有升高的 NAE 和 NAPE 水平的处理幼苗表现出生长受损和半乳糖脂合成减少,通过“原核”(即质体),而不是“真核”(即质体外)途径。总体而言,我们的数据为 NAPE-NAE 代谢的调控以及膜脂代谢和幼苗发育的协调提供了新的见解。

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