Kimura T, Nakamura K, Kajiura H, Hattori H, Nelson N, Asahi T
Laboratory of Biochemistry, School of Agriculture, Nagoya University, Japan.
J Biol Chem. 1989 Feb 25;264(6):3183-6.
In addition to two major alpha- and beta-subunits, the soluble oligomycin-insensitive F1ATPase purified from sweet potato root mitochondria contains four different minor subunits of gamma (Mr = 35,500), delta (Mr = 27,000), delta' (Mr = 23,000), and epsilon (Mr = 12,000) (Iwasaki, Y., and Asashi, T. (1983) Arch. Biochem. Biophys. 227, 164-173). Among these minor subunits, the delta-subunit specifically cross-reacted with an antibody against the delta-subunit of maize mitochondrial F1 which contains only three minor gamma-, delta- and epsilon-subunits like F1ATPases from other organisms, indicating that the delta'-subunit is an extra subunit of sweet potato F1 which is absent in the maize F1. All of the four minor subunits of sweet potato F1 were purified and their N-terminal amino acid sequences of 30-36 residues were determined. The N-terminal sequence of gamma-subunit was homologous to those of the gamma-subunits of bacterial F1 and mammalian mitochondrial F1. The N-terminal sequence of the delta-subunit was homologous to those of the delta-subunits of bacterial F1, chloroplast CF1, and oligomycin sensitivity conferring protein of bovine mitochondrial F1F0. A sequence homology was also observed between the sweet potato epsilon-subunit and the epsilon-subunit of bovine mitochondrial F1. The N-terminal sequence of the delta'-subunit did not show any significant sequence homology to known protein sequences. These subunit correspondences place plant mitochondrial F1 at an unique position in the evolution of F1ATPase.
除了两个主要的α和β亚基外,从甘薯根线粒体中纯化出的可溶性寡霉素不敏感F1ATP酶还含有四种不同的小亚基,分别是γ(Mr = 35,500)、δ(Mr = 27,000)、δ'(Mr = 23,000)和ε(Mr = 12,000)(岩崎洋和朝比奈敏郎(1983年)《生物化学与生物物理学文献》227卷,第164 - 173页)。在这些小亚基中,δ亚基与针对玉米线粒体F1的δ亚基的抗体发生特异性交叉反应,玉米线粒体F1仅包含三个小亚基γ、δ和ε,类似于其他生物体的F1ATP酶,这表明δ'亚基是甘薯F1特有的额外亚基,在玉米F1中不存在。甘薯F1的所有四个小亚基均被纯化,并测定了其30 - 36个残基的N端氨基酸序列。γ亚基的N端序列与细菌F1和哺乳动物线粒体F1的γ亚基的序列同源。δ亚基的N端序列与细菌F1、叶绿体CF1以及牛线粒体F1F0的寡霉素敏感性赋予蛋白的δ亚基的序列同源。在甘薯ε亚基和牛线粒体F1的ε亚基之间也观察到序列同源性。δ'亚基的N端序列与已知蛋白质序列没有任何显著的序列同源性。这些亚基对应关系使植物线粒体F1在F1ATP酶的进化中处于独特的位置。