Scheller H V, Svendsen I, Møller B L
Department of Plant Physiology, Royal Veterinary and Agricultural University, Valby, Denmark.
J Biol Chem. 1989 Apr 25;264(12):6929-34.
A photosystem I (PS-I) preparation from barley (Hordeum vulgare L.) containing the reaction center protein P700-chlorophyll a-protein 1 (CP1) and smaller polypeptides with apparent molecular masses of 18, 16, 14, 9.5, 9, 4, and 1.5 kDa has been analyzed with respect to subunit stoichiometry. CP1 contains two homologous subunits with approximate masses of 82 kDa. CP1 and the smaller polypeptides were isolated, and the amino acid composition of each component and of the PS-I preparation was determined. Based on the amino acid composition data and the determined ability of each isolated polypeptide to bind Coomassie Brilliant Blue, the PS-I complex is shown to contain 1 mol of each of the homologous 82-kDa polypeptides as well as 1 mol of the 18-, 16-, 9.5-, and 9-kDa polypeptides for each mol of P700. The total polypeptide mass of the PS-I complex is 209 kDa excluding tryptophan and approximately 220 kDa including tryptophan. The two 82-kDa subunits present/P700 provide cysteine residues for binding only one Fe-S center. In conjunction with the earlier reported binding of four iron and four acid-labile sulfides to CP1/P700 (Høj, P. B., Svendsen, I., Scheller, H. V., and Møller, B. L. (1987) J. Biol. Chem. 262, 12676-12684), this demonstrates the center X is a [4Fe-4S] cluster and eliminates the possibility of center X being composed of two [2Fe-2S] clusters.
对来自大麦(Hordeum vulgare L.)的光系统I(PS-I)制剂进行了亚基化学计量分析,该制剂含有反应中心蛋白P700-叶绿素a蛋白1(CP1)以及表观分子量分别为18、16、14、9.5、9、4和1.5 kDa的较小多肽。CP1包含两个质量约为82 kDa的同源亚基。分离出CP1和较小的多肽,并测定了每种组分以及PS-I制剂的氨基酸组成。基于氨基酸组成数据以及所测定的每种分离多肽结合考马斯亮蓝的能力,结果表明PS-I复合物每摩尔P700含有1摩尔的每种82 kDa同源多肽以及1摩尔的18 kDa、16 kDa、9.5 kDa和9 kDa多肽。排除色氨酸后,PS-I复合物的总多肽质量为209 kDa,包括色氨酸时约为220 kDa。两个存在的82 kDa亚基/ P700仅为结合一个Fe-S中心提供半胱氨酸残基。结合先前报道的四个铁和四个酸不稳定硫化物与CP1 / P700的结合(Høj,P. B.,Svendsen,I.,Scheller,H. V.和Møller,B. L.(1987)J. Biol. Chem. 262,12676 - 12684),这表明中心X是一个[4Fe-4S]簇,并排除了中心X由两个[2Fe-2S]簇组成的可能性。