Instituto de la Grasa, CSIC, Avenida Padre Garcia Tejero 4, 41012 Seville, Spain.
Planta. 2010 May;231(6):1277-89. doi: 10.1007/s00425-010-1131-z. Epub 2010 Mar 10.
The beta-ketoacyl-acyl carrier protein synthase III (KAS III; EC 2.3.1.180) is a condensing enzyme catalyzing the initial step of fatty acid biosynthesis using acetyl-CoA as primer. To determine the mechanisms involved in the biosynthesis of fatty acids in sunflower (Helianthus annuus L.) developing seeds, a cDNA coding for HaKAS III (EF514400) was isolated, cloned and sequenced. Its protein sequence is as much as 72% identical to other KAS III-like ones such as those from Perilla frutescens, Jatropha curcas, Ricinus communis or Cuphea hookeriana. Phylogenetic study of the HaKAS III homologous proteins infers its origin from cyanobacterial ancestors. A genomic DNA gel blot analysis revealed that HaKAS III is a single copy gene. Expression levels of this gene, examined by Q-PCR, revealed higher levels in developing seeds storing oil than in leaves, stems, roots or seedling cotyledons. Heterologous expression of HaKAS III in Escherichia coli altered their fatty acid content and composition implying an interaction of HaKAS III with the bacterial FAS complex. Testing purified HaKAS III recombinant protein by adding to a reconstituted E. coli FAS system lacking condensation activity revealed a novel substrate specificity. In contrast to all hitherto characterized plant KAS IIIs, the activities of which are limited to the first cycles of intraplastidial fatty acid biosynthesis yielding C6 chains, HaKAS III participates in at least four cycles resulting in C10 chains.
β-酮酰基酰基载体蛋白合酶 III(KAS III;EC 2.3.1.180)是一种缩合酶,使用乙酰辅酶 A 作为引物催化脂肪酸生物合成的初始步骤。为了确定向日葵(Helianthus annuus L.)发育种子中脂肪酸生物合成的机制,分离、克隆并测序了编码 HaKAS III(EF514400)的 cDNA。其蛋白质序列与其他 KAS III 样蛋白(如紫苏、麻疯树、蓖麻或宽叶钩藤)的相似度高达 72%。HaKAS III 同源蛋白的系统发育研究推断其起源于蓝细菌祖先。基因组 DNA 凝胶印迹分析显示 HaKAS III 是单拷贝基因。通过 Q-PCR 检测该基因的表达水平,发现其在储存油脂的发育种子中高于叶片、茎、根或幼苗子叶。在大肠杆菌中异源表达 HaKAS III 改变了它们的脂肪酸含量和组成,这表明 HaKAS III 与细菌 FAS 复合物相互作用。通过向缺乏缩合活性的重组大肠杆菌 FAS 系统中添加纯化的 HaKAS III 重组蛋白进行测试,揭示了一种新的底物特异性。与所有迄今为止表征的植物 KAS III 不同,其活性仅限于质体内部脂肪酸生物合成的第一个循环,生成 C6 链,而 HaKAS III 参与至少四个循环,生成 C10 链。