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磷脂酰胆碱在伞形科植物胚乳发育过程中岩芹酸代谢中的表观作用

Apparent Role of Phosphatidylcholine in the Metabolism of Petroselinic Acid in Developing Umbelliferae Endosperm.

作者信息

Cahoon E. B., Ohlrogge J. B.

机构信息

Department of Botany and Plant Pathology, Michigan State University, East Lansing, Michigan 48824.

出版信息

Plant Physiol. 1994 Mar;104(3):845-855. doi: 10.1104/pp.104.3.845.

Abstract

Studies were conducted to characterize the metabolism of the unusual fatty acid petroselinic acid (18:1cis[delta]6) in developing endosperm of the Umbelliferae species coriander (Coriandrum sativum L.) and carrot (Daucus carota L.). Analyses of fatty acid compositions of glycerolipids of these tissues revealed a dissimilar distribution of petroselinic acid in triacylglycerols (TAG) and the major polar lipids phosphatidylcholine (PC) and phosphatidylethanolamine (PE). Petroselinic acid comprised 70 to 75 mol% of the fatty acids of TAG but only 9 to 20 mol% of the fatty acids of PC and PE. Although such data appeared to suggest that petroselinic acid is at least partially excluded from polar lipids, results of [1-14C]acetate radiolabeling experiments gave a much different picture of the metabolism of this fatty acid. In time-course labeling of carrot endosperm, [1-14C]acetate was rapidly incorporated into PC in high levels. Through 30 min, radiolabel was most concentrated in PC, and of this, 80 to 85% was in the form of petroselinic acid. One explanation for the large disparity in amounts of petroselinic acid in PC as determined by fatty acid mass analyses and 14C radiolabeling is that turnover of these lipids or the fatty acids of these lipids results in relatively low accumulation of petroselinic acid mass. Consistent with this, the kinetics of [1-14C]acetate time-course labeling of carrot endosperm and "pulse-chase" labeling of coriander endosperm suggested a possible flux of fatty acids from PC into TAG. In time-course experiments, radiolabel initially entered PC at the highest rates but accumulated in TAG at later time points. Similarly, in pulse-chase studies, losses in absolute amounts of radioactivity from PC were accompanied by significant increases of radiolabel in TAG. In addition, stereospecific analyses of unlabeled and [1-14C]acetate-labeled PC of coriander endosperm indicated that petroselinic acid can be readily incorporated into both the sn-1 and sn-2 positions of this lipid. Because petroselinic acid is neither synthesized nor further modified on polar lipids, the apparent metabolism of this fatty acid through PC (and possibly through other polar lipids) may define a function of PC in TAG assembly apart from its involvement in fatty acid modification reactions.

摘要

开展了多项研究,以表征伞形科植物芫荽(Coriandrum sativum L.)和胡萝卜(Daucus carota L.)发育中的胚乳中异常脂肪酸岩芹酸(18:1顺式Δ6)的代谢情况。对这些组织甘油脂质的脂肪酸组成分析表明,岩芹酸在三酰甘油(TAG)以及主要极性脂质磷脂酰胆碱(PC)和磷脂酰乙醇胺(PE)中的分布不同。岩芹酸占TAG脂肪酸的70%至75摩尔%,但仅占PC和PE脂肪酸的9%至20摩尔%。尽管这些数据似乎表明岩芹酸至少部分被排除在极性脂质之外,但[1-14C]乙酸放射性标记实验结果却呈现出该脂肪酸代谢的截然不同的情况。在胡萝卜胚乳的时间进程标记实验中,[1-14C]乙酸迅速大量掺入PC。在30分钟内,放射性标记最集中在PC中,其中80%至85%是以岩芹酸的形式存在。脂肪酸质量分析和14C放射性标记所测定的PC中岩芹酸含量存在巨大差异,一种解释是这些脂质或这些脂质的脂肪酸周转导致岩芹酸质量的积累相对较低。与此一致的是,胡萝卜胚乳[1-14C]乙酸时间进程标记的动力学以及芫荽胚乳的“脉冲追踪”标记表明,脂肪酸可能存在从PC流入TAG的通量。在时间进程实验中,放射性标记最初以最高速率进入PC,但在随后的时间点积累在TAG中。同样,在脉冲追踪研究中,PC放射性绝对量的损失伴随着TAG中放射性标记的显著增加。此外,对芫荽胚乳未标记和[1-14C]乙酸标记的PC进行的立体特异性分析表明,岩芹酸可容易地掺入该脂质的sn-1和sn-2位。由于岩芹酸既不在极性脂质上合成也不进一步修饰,这种脂肪酸通过PC(可能还通过其他极性脂质)的明显代谢可能定义了PC在TAG组装中的一种功能,这与其参与脂肪酸修饰反应无关。

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