Frébortová Jitka, Fraaije Marco W, Galuszka Petr, Sebela Marek, Pec Pavel, Hrbác Jan, Novák Ondrej, Bilyeu Kristin D, English James T, Frébort Ivo
Laboratory of Growth Regulators, Faculty of Science, Palacký University/Institute of Experimental Botany of the Academy of Science, Slechtitelů 11, 783 71 Olomouc, Czech Republic.
Biochem J. 2004 May 15;380(Pt 1):121-30. doi: 10.1042/BJ20031813.
The catalytic reaction of cytokinin oxidase/dehydrogenase (EC 1.5.99.12) was studied in detail using the recombinant flavoenzyme from maize. Determination of the redox potential of the covalently linked flavin cofactor revealed a relatively high potential dictating the type of electron acceptor that can be used by the enzyme. Using 2,6-dichlorophenol indophenol, 2,3-dimethoxy-5-methyl-1,4-benzoquinone or 1,4-naphthoquinone as electron acceptor, turnover rates with N6-(2-isopentenyl)adenine of approx. 150 s(-1) could be obtained. This suggests that the natural electron acceptor of the enzyme is quite probably a p-quinone or similar compound. By using the stopped-flow technique, it was found that the enzyme is rapidly reduced by N6-(2-isopentenyl)adenine (k(red)=950 s(-1)). Re-oxidation of the reduced enzyme by molecular oxygen is too slow to be of physiological relevance, confirming its classification as a dehydrogenase. Furthermore, it was established for the first time that the enzyme is capable of degrading aromatic cytokinins, although at low reaction rates. As a result, the enzyme displays a dual catalytic mode for oxidative degradation of cytokinins: a low-rate and low-substrate specificity reaction with oxygen as the electron acceptor, and high activity and strict specificity for isopentenyladenine and analogous cytokinins with some specific electron acceptors.
利用来自玉米的重组黄素酶,对细胞分裂素氧化酶/脱氢酶(EC 1.5.99.12)的催化反应进行了详细研究。对共价连接的黄素辅因子的氧化还原电位测定显示,其电位相对较高,这决定了该酶可利用的电子受体类型。以2,6 - 二氯酚靛酚、2,3 - 二甲氧基 - 5 - 甲基 - 1,4 - 苯醌或1,4 - 萘醌作为电子受体,N6 -(2 - 异戊烯基)腺嘌呤的周转速率约为150 s(-1)。这表明该酶的天然电子受体很可能是对苯醌或类似化合物。通过使用停流技术发现,该酶可被N6 -(2 - 异戊烯基)腺嘌呤快速还原(k(red)=950 s(-1))。还原态酶被分子氧再氧化的速度太慢,不具有生理相关性,这证实了它属于脱氢酶的分类。此外,首次证实该酶能够降解芳香族细胞分裂素,尽管反应速率较低。因此,该酶在细胞分裂素的氧化降解中表现出双重催化模式:以氧作为电子受体时,反应速率低且底物特异性低;而对于异戊烯基腺嘌呤和具有某些特定电子受体的类似细胞分裂素,活性高且特异性严格。