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首页> 外文期刊>Physiologia plantarum >Sunflower (Helianthus annuus) long-chain acyl-coenzyme A synthetases expressed at high levels in developing seeds
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Sunflower (Helianthus annuus) long-chain acyl-coenzyme A synthetases expressed at high levels in developing seeds

机译:向日葵(向日葵)长链酰基辅酶A合成酶在正在发育的种子中高水平表达

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Long chain fatty acid synthetases (LACSs) activate the fatty acid chains produced by plastidial de novo biosynthesis to generate acyl-CoA derivatives, important intermediates in lipid metabolism. Oilseeds, like sunflower, accumulate high levels of triacylglycerols (TAGs) in their seeds to nourish the embryo during germination. This requires that sunflower seed endosperm supports very active glycerolipid synthesis during development. Sunflower seed plastids produce large amounts of fatty acids, which must be activated through the action of LACSs, in order to be incorporated into TAGs. We cloned two different LACS genes from developing sunflower endosperm, HaLACS1 and HaLACS2, which displayed sequence homology with Arabidopsis LACS9 and LACS8 genes, respectively. These genes were expressed at high levels in developing seeds and exhibited distinct subcellular distributions. We generated constructs in which these proteins were fused to green fluorescent protein and performed transient expression experiments in tobacco cells. The HaLACS1 protein associated with the external envelope of tobacco chloroplasts, whereas HaLACS2 was strongly bound to the endoplasmic reticulum. Finally, both proteins were overexpressed in Escherichia coli and recovered as active enzymes in the bacterial membranes. Both enzymes displayed similar substrate specificities, with a very high preference for oleic acid and weaker activity toward stearic acid. On the basis of our findings, we discuss the role of these enzymes in sunflower oil synthesis.
机译:长链脂肪酸合成酶(LACS)激活由质体从头生物合成产生的脂肪酸链,以生成酰基CoA衍生物,这是脂质代谢中的重要中间体。油料种子像向日葵一样,在种子中积聚高水平的三酰甘油(TAG),以在萌发期间滋养胚胎。这就要求葵花籽胚乳在发育过程中支持非常活跃的甘油脂合成。向日葵种子质体会产生大量脂肪酸,必须将其通过LACS激活才能将其掺入TAG。我们从发育中的向日葵胚乳中克隆了两个不同的LACS基因HaLACS1和HaLACS2,它们分别与拟南芥属LACS9和LACS8基因显示出序列同源性。这些基因在发育中的种子中高水平表达,并表现出明显的亚细胞分布。我们生成了将这些蛋白质融合到绿色荧光蛋白质上的构建体,并在烟草细胞中进行了瞬时表达实验。 HaLACS1蛋白与烟草叶绿体的外部包膜相关,而HaLACS2与内质网紧密结合。最后,两种蛋白质在大肠杆菌中均过表达,并在细菌膜中作为活性酶被回收。两种酶均显示出相似的底物特异性,对油酸的偏爱很高,对硬脂酸的活性较弱。根据我们的发现,我们讨论了这些酶在葵花籽油合成中的作用。

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