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Two novel thioesterases are key determinants of the bimodal distribution of acyl chain length of Cuphea palustris seed oil.

机译:两种新颖的硫酯酶是of蒲种子油酰基链长度双峰分布的关键决定因素。

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摘要

The seed oil of Cuphea palustris has an unusual fatty-acyl composition, whereby the principal fatty-acyl groups, myristate (64%) and caprylate (20%), differ by more than two methylenes. We have isolated two thioesterase (TE) cDNAs from C. palustris, encoding proteins designated Cp FatB1 and Cp FatB2, which, when expressed in Escherichia coli, have TE activities specific for 8:0/10:0- and 14:0/16:0-acyl carrier protein substrates, respectively. The specific activities of the recombinant affinity-purified enzymes indicate that Cp FatB2 is kinetically superior to Cp FatB1. This result is consistent with the predominance of 14:0 in the seed oil, despite apparently equal mRNA abundance of the two transcripts in the seed. In C. palustris the expression of both sequences is confined to the seed tissues. Based on these findings we propose that these two enzymes are major factors determining the bimodal chain-length composition of C. palustris oil. Analysis of the immature and mature seed oil by reverse-phase high-performance liquid chromatography confirmed that the principal triglycerides contain both 8:0 and 14:0. This result indicates that both fatty acids are synthesized at the same time and in the same cells at all developmental stages during oil deposition, suggesting that the two TEs act together in the same fatty acid synthesis system.
机译:Cuphea palustris的种子油具有不同寻常的脂肪酰基组成,其中主要的脂肪酰基(肉豆蔻酸酯(64%)和辛酸酯(20%))相差两个以上的亚甲基。我们已经从C. palustris中分离了两个硫代酯酶(TE)cDNA,编码的蛋白分别命名为Cp FatB1和Cp FatB2,当在大肠杆菌中表达时,它们具有特异于8:0/10:0-和14:0/16的TE活性:0-酰基载体蛋白底物。重组亲和纯化的酶的比活性表明,Cp FatB2在动力学上优于Cp FatB1。尽管种子中两个转录本的mRNA丰度明显相等,但该结果与种子油中14:0的优势相符。在P. palustris中,两个序列的表达都限于种子组织。基于这些发现,我们认为这两种酶是决定谷粉梭菌油双峰链长组成的主要因素。通过反相高效液相色谱分析未成熟和成熟的种子油,证实主要的甘油三酸酯均包含8:0和14:0。该结果表明,两种脂肪酸在油沉积过程中的所有发育阶段同时在同一细胞中合成,这表明这两种TE在同一脂肪酸合成系统中共同起作用。

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