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首页> 外文期刊>BMC Plant Biology >Lipases of germinating jojoba seeds efficiently hydrolyze triacylglycerols and wax esters and display wax ester-synthesizing activity
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Lipases of germinating jojoba seeds efficiently hydrolyze triacylglycerols and wax esters and display wax ester-synthesizing activity

机译:发芽jojoba种子的脂肪酶有效地水解三酰基甘油和蜡酯,并显示蜡酯合成活性

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BACKGROUND:Simmondsia chinensis (jojoba) is the only plant known to store wax esters instead of triacylglycerols in its seeds. Wax esters are composed of very-long-chain monounsaturated fatty acids and fatty alcohols and constitute up to 60% of the jojoba seed weight. During jojoba germination, the first step of wax ester mobilization is catalyzed by lipases. To date, none of the jojoba lipase-encoding genes have been cloned and characterized. In this study, we monitored mobilization of storage reserves during germination of jojoba seeds and performed detailed characterization of the jojoba lipases using microsomal fractions isolated from germinating seeds.RESULTS:During 26?days of germination, we observed a 60-70% decrease in wax ester content in the seeds, which was accompanied by the reduction of oleosin amounts and increase in glucose content. The activity of jojoba lipases in the seed microsomal fractions increased in the first 50?days of germination. The enzymes showed higher activity towards triacylglycerols than towards wax esters. The maximum lipase activity was observed at 60?°C and pH around 7 for triacylglycerols and 6.5-8 for wax esters. The enzyme efficiently hydrolyzed various wax esters containing saturated and unsaturated acyl and alcohol moieties. We also demonstrated that jojoba lipases possess wax ester-synthesizing activity when free fatty alcohols and different acyl donors, including triacylglycerols and free fatty acids, are used as substrates. For esterification reactions, the enzyme utilized both saturated and unsaturated fatty alcohols, with the preference towards long chain and very long chain compounds.CONCLUSIONS:In in vitro assays, jojoba lipases catalyzed hydrolysis of triacylglycerols and different wax esters in a broad range of temperatures. In addition, the enzymes had the ability to synthesize wax esters in the backward reaction. Our data suggest that jojoba lipases may be more similar to other plant lipases than previously assumed.
机译:背景:SimMondsia Chinensis(Jojoba)是唯一已知储存蜡酯而不是其种子的三酰基甘油的植物。蜡酯由非常长链的单不饱和脂肪酸和脂肪醇组成,占Jojoba种子重量的60%。在Jojoba发芽期间,蜡酯动员的第一步被脂肪酶催化。迄今为止,没有克隆和表征编码基因的任何一个jojoba脂肪酶编码基因。在这项研究中,我们监测了在Jojoba种子的发芽期间监测储量储备的动员,并使用从发芽种子中分离的微粒体级分来进行jojoba脂肪酶的详细表征。结果:在26例萌发期间,我们观察到蜡降低60-70%种子中的酯含量,伴随着减少油蛋白量的减少并增加葡萄糖含量。 jojoba脂肪酶在种子微粒体级分中的活性在萌发的前50?天中增加。酶向三酰基甘油的活性显示出比蜡酯更高。在60℃和60℃下观察到最大脂肪酶活性,对于蜡酯的三酰基甘油和6.5-8℃。酶有效地水解含有饱和和不饱和酰基和醇部分的各种蜡酯。我们还证明Jojoba脂肪酶当游离脂肪醇和不同的酰基供体,包括三酰基甘油和游离脂肪酸的不同酰基供体,用作基质。对于酯化反应,酶使用饱和和不饱和脂肪醇,偏好于长链和非常长的链化合物。结论:在体外测定中,Jojoba脂肪酶在宽范围的温度下催化三酰基甘油和不同蜡酯的水解。此外,酶的能力在后向反应中合成蜡酯。我们的数据表明Jojoba脂肪酶可能​​与其他植物脂肪酶更相似,而不是先前假设。

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