Schütt B S, Brummel M, Schuch R, Spener F
Institut für Biochemie, Universität Münster, Germany.
Planta. 1998 Jun;205(2):263-8. doi: 10.1007/s004250050320.
To investigate the role of acyl carrier protein (ACP) in determining the fate of the acyl moieties linked to it in the course of de-novo fatty acid biosynthesis in higher plants, we carried out in vitro experiments to reconstitute the fatty acid synthase (FAS) reaction in extracts of spinach (Spinacia oleracea L.) leaves, rape (Brassica napus L.) seeds and Cuphea lanceolata Ait. seeds. The action of two major C. lanceolata ACP isoforms (ACP 1 and ACP 2) compared to ACP from Escherichia coli was monitored by saponification of the corresponding FAS products with subsequent analysis of the liberated fatty acids by high-performance liquid chromatography. In a second approach the preference of the medium-chain acyl-ACP-specific thioesterase (EC 3.1.2.14) of C. lanceolata seeds for the hydrolysis of acyl-ACPs prepared from the three ACP types was investigated. Both ACP isoforms from C. lanceolata seeds supported the synthesis of medium-chain fatty acids in a reconstituted FAS reaction of spinach leaf extracts. Compared to the isoform ACP 1, ACP 2 was more effective in supporting the synthesis of such fatty acids in the FAS reaction of rape seed extracts and caused a higher accumulation of FAS products in all experiments. No preference of the medium-chain thioesterase for one specific ACP isoform was observed. The results indicate that the presence of ACP 2 is essential for the synthesis of decanoic acid in C. lanceolata seeds, and its expression in the phase of accumulation of high levels of this fatty acid provides an additional and highly efficient cofactor for stimulating the FAS reaction.
为了研究酰基载体蛋白(ACP)在高等植物从头脂肪酸生物合成过程中对与其相连的酰基部分命运的决定作用,我们进行了体外实验,以在菠菜(Spinacia oleracea L.)叶片、油菜(Brassica napus L.)种子和柳叶菜(Cuphea lanceolata Ait.)种子的提取物中重建脂肪酸合酶(FAS)反应。通过对相应FAS产物进行皂化,随后用高效液相色谱分析释放的脂肪酸,监测了两种主要的柳叶菜ACP同工型(ACP 1和ACP 2)与大肠杆菌ACP相比的作用。在第二种方法中,研究了柳叶菜种子中链酰基-ACP特异性硫酯酶(EC 3.1.2.14)对由三种ACP类型制备的酰基-ACP水解的偏好性。柳叶菜种子的两种ACP同工型都在菠菜叶提取物的重组FAS反应中支持中链脂肪酸的合成。与同工型ACP 1相比,ACP 2在支持油菜籽提取物的FAS反应中合成此类脂肪酸方面更有效,并且在所有实验中导致FAS产物的积累更高。未观察到中链硫酯酶对一种特定ACP同工型的偏好。结果表明,ACP 2的存在对于柳叶菜种子中癸酸的合成至关重要,并且其在该脂肪酸高水平积累阶段的表达为刺激FAS反应提供了一种额外且高效的辅因子。