Høj P B, Møller B L
J Biol Chem. 1986 Oct 25;261(30):14292-300.
Germination and growth of barley (Hordeum vulgare L.) in the presence of 59Fe2+ or 35SO4(2-) allows heavy incorporation of both isotopes into the thylakoid membranes and into isolated photosystem I particles. Analysis of 59Fe-labeled preparations by sodium dodecyl sulfate-polyacrylamide gel electrophoresis under mild conditions demonstrates that a minimum of four iron atoms/P700 is carried on P700-chlorophyll a-protein 1. When isolated from 35S-labeled preparations, P700-chlorophyll a-protein 1 binds zero valence 35S, which is converted into acid-labile [35S]sulfide by dithiothreitol reduction. Isolated photosystem I particles contain 14 acid-labile sulfide atoms and 10 iron atoms for each molecule of P700 and are composed of polypeptides of 110, 18, 15, 10, and 8 kDa of which the 10-kDa component is loosely bound. Under the electrophoretic conditions used, none of the low molecular weight polypeptides could be shown to be specifically associated with iron or acid-labile sulfide. Carboxymethylation of cysteine residues shows a high cysteine content in the 8-kDa polypeptide and an intermediate content in the 110- and 18-kDa polypeptides, whereas the 15-kDa polypeptide is devoid of sulfur amino acids. The experiments with the 59Fe-labeled thylakoids reveal other labeled polypeptides not associated with photosystem I, namely cytochrome f and possibly cytochromes b6 and b559.
在59Fe2+或35SO4(2-)存在的情况下,大麦(Hordeum vulgare L.)的发芽和生长使得这两种同位素大量掺入类囊体膜和分离的光系统I颗粒中。在温和条件下,通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳对59Fe标记的制剂进行分析表明,每个P700至少有四个铁原子负载在P700-叶绿素a-蛋白1上。当从35S标记的制剂中分离时,P700-叶绿素a-蛋白1结合零价35S,通过二硫苏糖醇还原将其转化为酸不稳定的[35S]硫化物。分离的光系统I颗粒对于每个P700分子含有14个酸不稳定的硫化物原子和10个铁原子,并且由110、18、15、10和8 kDa的多肽组成,其中10 kDa的组分结合松散。在所使用的电泳条件下,没有低分子量多肽显示与铁或酸不稳定的硫化物有特异性关联。半胱氨酸残基的羧甲基化显示8 kDa多肽中的半胱氨酸含量高,110和18 kDa多肽中的含量中等,而15 kDa多肽不含硫氨基酸。对59Fe标记的类囊体进行的实验揭示了其他与光系统I无关的标记多肽,即细胞色素f以及可能的细胞色素b6和b559。