Yasuno Rie, von Wettstein-Knowles Penny, Wada Hajime
Department of Life Sciences, Graduate School of Arts and Sciences, University of Tokyo, Komaba 3-8-1, Meguro-ku, Tokyo 153-8902, Japan.
J Biol Chem. 2004 Feb 27;279(9):8242-51. doi: 10.1074/jbc.M308894200. Epub 2003 Dec 2.
Substrate specificity of condensing enzymes is a predominant factor determining the nature of fatty acyl chains synthesized by type II fatty acid synthase (FAS) enzyme complexes composed of discrete enzymes. The gene (mtKAS) encoding the condensing enzyme, beta-ketoacyl-[acyl carrier protein] (ACP) synthase (KAS), constituent of the mitochondrial FAS was cloned from Arabidopsis thaliana, and its product was purified and characterized. The mtKAS cDNA complemented the KAS II defect in the E. coli CY244 strain mutated in both fabB and fabF encoding KAS I and KAS II, respectively, demonstrating its ability to catalyze the condensation reaction in fatty acid synthesis. In vitro assays using extracts of CY244 containing all E. coli FAS components, except that KAS I and II were replaced by mtKAS, gave C(4)-C(18) fatty acids exhibiting a bimodal distribution with peaks at C(8) and C(14)-C(16). Previously observed bimodal distributions obtained using mitochondrial extracts appear attributable to the mtKAS enzyme in the extracts. Although the mtKAS sequence is most similar to that of bacterial KAS IIs, sensitivity of mtKAS to the antibiotic cerulenin resembles that of E. coli KAS I. In the first or priming condensation reaction of de novo fatty acid synthesis, purified His-tagged mtKAS efficiently utilized malonyl-ACP, but not acetyl-CoA as primer substrate. Intracellular targeting using green fluorescent protein, Western blot, and deletion analyses identified an N-terminal signal conveying mtKAS into mitochondria. Thus, mtKAS with its broad chain length specificity accomplishes all condensation steps in mitochondrial fatty acid synthesis, whereas in plastids three KAS enzymes are required.
缩合酶的底物特异性是决定由离散酶组成的II型脂肪酸合酶(FAS)酶复合物合成的脂肪酰链性质的主要因素。从拟南芥中克隆了编码线粒体FAS组成成分β-酮酰基-[酰基载体蛋白](ACP)合酶(KAS)的缩合酶的基因(mtKAS),并对其产物进行了纯化和表征。mtKAS cDNA弥补了大肠杆菌CY244菌株中KAS II的缺陷,该菌株在分别编码KAS I和KAS II的fabB和fabF中均发生了突变,证明了其催化脂肪酸合成中缩合反应的能力。使用CY244提取物进行的体外测定,其中包含所有大肠杆菌FAS成分,但KAS I和II被mtKAS取代,得到了C(4)-C(18)脂肪酸,呈现双峰分布,峰值出现在C(8)和C(14)-C(16)处。先前使用线粒体提取物观察到的双峰分布似乎归因于提取物中的mtKAS酶。尽管mtKAS序列与细菌KAS II的序列最相似,但mtKAS对抗生素浅蓝菌素的敏感性与大肠杆菌KAS I相似。在从头脂肪酸合成的第一个或引发缩合反应中,纯化的His标签mtKAS有效地利用丙二酸单酰-ACP,但不利用乙酰辅酶A作为引物底物。使用绿色荧光蛋白、蛋白质免疫印迹和缺失分析进行的细胞内定位鉴定了一个将mtKAS转运到线粒体中的N端信号。因此,具有广泛链长特异性的mtKAS完成了线粒体脂肪酸合成中的所有缩合步骤,而在质体中则需要三种KAS酶。