Funk M O, Whitney M A, Hausknecht E C, O'Brien E M
Anal Biochem. 1985 Apr;146(1):246-51. doi: 10.1016/0003-2697(85)90422-1.
Isoelectric focusing in thin-layer polyacrylamide gels has been applied to the analysis of the enzymes involved in the formation and destruction of peroxides in soybeans [Glycine max (L.)], lipoxygenases and peroxidases, respectively. As a result of differences in pH optima for catalytic activity, lipoxygenases were selectively detected by adjusting the pH employed for activity-specific staining. Type-1 lipoxygenase was revealed not only by staining based on the conversion of linoleic acid to hydroperoxide but also by two stains based on the reduction of the hydroperoxide. These methods were found to be suitable for the analysis and characterization of isoenzyme patterns in different soybean cultivars. A substantial difference in the distribution of lipoxygenases maximally active near pH 7 was observed for cultivars Provar and Vickery. A similar degree of separation of the isoenzymes was achieved on a larger scale using chromato-focusing in the pH range 7.4-5.0.
薄层层析聚丙烯酰胺凝胶中的等电聚焦已分别应用于大豆[Glycine max (L.)]中过氧化物形成和破坏过程中涉及的酶(即脂氧合酶和过氧化物酶)的分析。由于催化活性的最适pH值存在差异,通过调整用于活性特异性染色的pH值,可以选择性地检测脂氧合酶。1型脂氧合酶不仅可以通过基于亚油酸转化为氢过氧化物的染色来揭示,还可以通过基于氢过氧化物还原的两种染色来揭示。这些方法被发现适用于分析和表征不同大豆品种中的同工酶模式。在品种Provar和Vickery中,观察到在pH 7附近活性最高的脂氧合酶分布存在显著差异。在7.4 - 5.0的pH范围内使用色谱聚焦在更大规模上实现了类似程度的同工酶分离。