Shin M, Yokoyama Z, Abe A, Fukasawa H
J Biochem. 1979 Apr;85(4):1075-81. doi: 10.1093/oxfordjournals.jbchem.a132415.
Wheat ferredoxin was purified from the leaves of common wheat (Triticum aestivum). The absorption spectrum showed maxima at 465, 425, 332, and 278 nm. The absorbance ratio, A425 nm/A278 nm was 0.49, and the millimolar extinction coefficient at 425 nm was 10.8 mM-1. cm-1. The amino acid composition was determined to be Lys5, His2, Arg1, Asp11, Thr5, Ser7, Glu18, Pro5, Gly6, Ala7, Cys5, Val7, Met1, Ile4, Leu7, Tyr4, Phe1, and Trp1. The total number of amino acid residues was 97. The molecular weight was calculated from the amino acid composition to be 10,829, including iron and sulfur atoms. This value was confirmed by other methods, which were based on the contents of non-heme iron and of terminal amino acid. The N-terminal amino acid was alanine, and the C-terminal amino acid sequence was -Glu-Leu-Thr-AlaCOOH. Comparative studies were performed between T. aestivum ferredoxin and ferredoxins isolated from closely related species; these were T. aegilopoides, T. durum, Ae. squarrosa, and Ae. ovata. No significant differences in the properties of these ferredoxins were detected. It was also shown that these ferredoxins are immunologically homologous. It is, therefore, likely that one molecular species of ferredoxin is distributed through two genera of Triticum and Aegilops.
从小麦(普通小麦)叶片中纯化出了小麦铁氧还蛋白。其吸收光谱在465、425、332和278纳米处有最大值。吸光度比值A425纳米/A278纳米为0.49,425纳米处的毫摩尔消光系数为10.8 mM⁻¹·cm⁻¹。测定其氨基酸组成为:赖氨酸5个、组氨酸2个、精氨酸1个、天冬氨酸11个、苏氨酸5个、丝氨酸7个、谷氨酸18个、脯氨酸5个、甘氨酸6个、丙氨酸7个、半胱氨酸5个、缬氨酸7个、甲硫氨酸1个、异亮氨酸4个、亮氨酸7个、酪氨酸4个、苯丙氨酸1个、色氨酸1个。氨基酸残基总数为97个。根据氨基酸组成计算出的分子量为10829,包括铁和硫原子。该值通过基于非血红素铁含量和末端氨基酸含量的其他方法得到了证实。N端氨基酸为丙氨酸,C端氨基酸序列为-Glu-Leu-Thr-AlaCOOH。对普通小麦铁氧还蛋白与从近缘物种(拟斯卑尔脱山羊草、硬粒小麦、节节麦和卵穗山羊草)中分离出的铁氧还蛋白进行了比较研究;未检测到这些铁氧还蛋白在性质上有显著差异。还表明这些铁氧还蛋白在免疫上是同源的。因此,很可能一种铁氧还蛋白分子种类分布于小麦属和山羊草属这两个属中。