Sebela Marek, Lamplot Zbynek, Petrivalský Marek, Kopecný David, Lemr Karel, Frébort Ivo, Pec Pavel
Department of Biochemistry, Faculty of Science, Palacký University, Slechtitelů 11, CZ-783 71 Olomouc-Holice, Czech Republic.
Biochim Biophys Acta. 2003 Apr 11;1647(1-2):355-60. doi: 10.1016/s1570-9639(03)00094-3.
Reactions of pea diamine oxidase (PSAO) and maize polyamine oxidase (MPAO) with 1,4-bis(3-aminopropyl)-piperazine (BAPP), diethylenetriamine (DETA), dipropylenetriamine (DPTA), dehydrospermine (DHSP) and 3-oxapentane-1,5-diamine (OPD) were studied and compared. These reactions were characterised by kinetic measurements (kinetic constants, stoichiometry) and by measurements of absorption spectra (reaction mechanisms). In the case of oxidised polyamine compounds, the corresponding reaction products were determined using analytical methods (coloured trapping reactions, mass spectrometry, IR spectroscopy, thin layer chromatography). Some of the compounds were found to be substrates of PSAO and relatively potent inhibitors of MPAO (and vice versa) all at once. The others showed the same effect on both enzymes. This may have an importance for designing of experiments in physiological studies in plants.
研究并比较了豌豆二胺氧化酶(PSAO)和玉米多胺氧化酶(MPAO)与1,4 - 双(3 - 氨丙基)哌嗪(BAPP)、二乙烯三胺(DETA)、二丙烯三胺(DPTA)、脱氢精胺(DHSP)和3 - 氧杂戊烷 - 1,5 - 二胺(OPD)的反应。这些反应通过动力学测量(动力学常数、化学计量学)和吸收光谱测量(反应机制)来表征。对于氧化的多胺化合物,使用分析方法(显色捕获反应、质谱、红外光谱、薄层色谱)确定相应的反应产物。发现一些化合物同时是PSAO的底物和MPAO的相对强效抑制剂(反之亦然)。其他化合物对两种酶表现出相同的作用。这可能对植物生理学研究中的实验设计具有重要意义。