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来自向日葵的诱变酰基-ACP硫酯酶FATA等位基因在烟草叶片和拟南芥种子中活性提高的效果。

Effect of a mutagenized acyl-ACP thioesterase FATA allele from sunflower with improved activity in tobacco leaves and Arabidopsis seeds.

作者信息

Moreno-Pérez Antonio Javier, Venegas-Calerón Mónica, Vaistij Fabián E, Salas Joaquin J, Larson Tony R, Garcés Rafael, Graham Ian A, Martínez-Force Enrique

机构信息

Instituto de la Grasa, CSIC, Av. Padre García Tejero, 4, 41012, Sevilla, Spain.

出版信息

Planta. 2014 Mar;239(3):667-77. doi: 10.1007/s00425-013-2003-0. Epub 2013 Dec 11.

Abstract

The substrate specificity of the acyl-acyl carrier protein (ACP) thioesterases significantly determines the type of fatty acids that are exported from plastids. Thus, designing acyl-ACP thioesterases with different substrate specificities or kinetic properties would be of interest for plant lipid biotechnology to produce oils enriched in specialty fatty acids. In the present work, the FatA thioesterase from Helianthus annuus was used to test the impact of changes in the amino acids present in the binding pocket on substrate specificity and catalytic efficiency. Amongst all the mutated enzymes studied, Q215W was especially interesting as it had higher specificity towards saturated acyl-ACP substrates and higher catalytic efficiency compared to wild-type H. annuus FatA. Null, wild type and high-efficiency alleles were transiently expressed in tobacco leaves to check their effect on lipid biosynthesis. Expression of active FatA thioesterases altered the composition of leaf triacylglycerols but did not alter total lipid content. However, the expression of the wild type and the high-efficiency alleles in Arabidopsis thaliana transgenic seeds resulted in a strong reduction in oil content and an increase in total saturated fatty acid content. The role and influence of acyl-ACP thioesterases in plant metabolism and their possible applications in lipid biotechnology are discussed.

摘要

酰基 - 酰基载体蛋白(ACP)硫酯酶的底物特异性显著决定了从质体输出的脂肪酸类型。因此,设计具有不同底物特异性或动力学特性的酰基 - ACP硫酯酶对于植物脂质生物技术生产富含特殊脂肪酸的油脂具有重要意义。在本研究中,来自向日葵的FatA硫酯酶被用于测试结合口袋中氨基酸变化对底物特异性和催化效率的影响。在所有研究的突变酶中,Q215W特别引人关注,因为与野生型向日葵FatA相比,它对饱和酰基 - ACP底物具有更高的特异性和更高的催化效率。将无效、野生型和高效等位基因在烟草叶片中瞬时表达,以检查它们对脂质生物合成的影响。活性FatA硫酯酶的表达改变了叶片三酰甘油的组成,但没有改变总脂质含量。然而,野生型和高效等位基因在拟南芥转基因种子中的表达导致油含量大幅降低和总饱和脂肪酸含量增加。本文讨论了酰基 - ACP硫酯酶在植物代谢中的作用和影响及其在脂质生物技术中的可能应用。

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