首页> 外文期刊>Journal of Plant Physiology >Characterization of soluble acyl-ACP desaturases from Camelina sativa, Macadamia tetraphylla and Dolichandra unguis-cati
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Characterization of soluble acyl-ACP desaturases from Camelina sativa, Macadamia tetraphylla and Dolichandra unguis-cati

机译:茶树,澳洲坚果和杜鹃花可溶性酰基-ACP脱氢酶的表征

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摘要

Acyl-acyl carrier protein (ACP) desaturases (EC 1.14.19.2) are soluble enzymes that catalyse the insertion of a double bond into saturated fatty acid bound in saturated acyl chains bound to ACP in higher plants, producing cis-monounsaturated fatty acids. Three types of soluble acyl-ACP desaturases have been described: Delta(9)-acyl-ACP, Delta(6)-acyl-ACP and Delta(4)-acyl-ACP desaturases, which differ in the substrate specificity and the position in which the double bond is introduced. In the present work, Camelina sativa (CsSAD), Macadamia tetraphylla (MtSAD) and Dolichandra unguis-cati (DuSAD) desaturases were cloned, sequenced and characterized. Single copies of CsSAD, MtSAD and DuSAD with three, one and two different alleles, respectively, were found. The corresponding mature proteins were heterologously expressed in Escherichia coli for biochemical characterization in protein extracts. The recombinant CsSAD enzyme showed 300-fold higher specificity towards 18:0-ACP than 16:0-ACP. Similar profile exhibited MtSAD although the differences in the specificity were lower, around 170-fold higher for 18:0-ACP than 16:0ACP. Furthermore, DuSAD presented a profile showing preference towards 16:0-ACP against 18:0-ACP, around twice more, being so a 49 palmitoyl-ACP desaturase. Also, we reported the expression profile of CsSAD, which showed the highest levels of expression in expanding tissues that typically are very active in lipid biosynthesis such as developing seed endosperm. Moreover, the possibility to express a new desaturase in C. sativa (oilseed crop that store high levels of oil and is easy to transform) to create a new line rich in short monounsaturated fatty acid is discussed. (C) 2015 Elsevier GmbH. All rights reserved.
机译:酰基-酰基载体蛋白(ACP)去饱和酶(EC 1.14.19.2)是可溶的酶,可催化双键插入与高等植物中与ACP结合的饱和酰基链中的饱和脂肪酸结合,产生顺式-单不饱和脂肪酸。已描述了三种类型的可溶性酰基ACP去饱和酶:Delta(9)-酰基ACP,Delta(6)-酰基ACP和Delta(4)-酰基ACP去饱和酶,它们的底物特异性和在中的位置不同引入了双键。在目前的工作中,克隆,测序,表征了苜蓿茶(CsSAD),澳洲坚果(MtSAD)和杜鹃花(Dolichandra unguis-cati(DuSAD))。发现分别具有三个,一个和两个不同等位基因的CsSAD,MtSAD和DuSAD的单拷贝。相应的成熟蛋白在大肠杆菌中异源表达,用于蛋白质提取物中的生化表征。重组CsSAD酶对18:0-ACP的特异性比16:0-ACP高300倍。 MtSAD相似,但特异性差异较低,18:0-ACP比16:0ACP高170倍左右。此外,DuSAD展示了一个特征,显示相对于18:0-ACP相对于16:0-ACP的偏爱性高出大约两倍,因此是49棕榈酰-ACP去饱和酶。同样,我们报道了CsSAD的表达情况,该结果在通常在脂质生物合成(例如发育中的胚乳)中非常活跃的扩张组织中显示出最高水平的表达。此外,讨论了在苜蓿苜蓿(C. sativa)(储存高水平油且易于转化的油料作物)中表达新的去饱和酶以创建富含短单不饱和脂肪酸的新品系的可能性。 (C)2015 Elsevier GmbH。版权所有。

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