Cytokinin oxidase or dehydrogenase? Mechanism of cytokinin degradation in cereals
Jazyk angličtina Země Anglie, Velká Británie Médium print
Typ dokumentu srovnávací studie, časopisecké články, práce podpořená grantem
PubMed
11168382
DOI
10.1046/j.1432-1033.2001.01910.x
PII: ejb1910
Knihovny.cz E-zdroje
- MeSH
- cytokininy metabolismus MeSH
- flavoproteiny antagonisté a inhibitory metabolismus MeSH
- isopentenyladenosin metabolismus MeSH
- ječmen (rod) enzymologie MeSH
- jedlá semena enzymologie MeSH
- molekulární sekvence - údaje MeSH
- oxidoreduktasy izolace a purifikace metabolismus MeSH
- peroxid vodíku analýza MeSH
- pšenice enzymologie MeSH
- rostlinné geny MeSH
- sekvence aminokyselin MeSH
- sekvenční analýza proteinů MeSH
- sekvenční homologie aminokyselin MeSH
- semena rostlinná enzymologie MeSH
- substrátová specifita MeSH
- transport elektronů MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- srovnávací studie MeSH
- Názvy látek
- cytokinin oxidase MeSH Prohlížeč
- cytokininy MeSH
- flavoproteiny MeSH
- isopentenyladenosin MeSH
- oxidoreduktasy MeSH
- peroxid vodíku MeSH
An enzyme degrading cytokinins with isoprenoid side chain, previously named cytokinin oxidase, was purified to near homogeneity from wheat and barley grains. New techniques were developed for the enzyme activity assay and staining on native electrophoretic gels to identify the protein. The purified wheat enzyme is a monomer 60 kDa, its N-terminal amino-acid sequence shows similarity to hypothetical cytokinin oxidase genes from Arabidopsis thaliana, but not to the enzyme from maize. N6-isopentenyl-2-(2-hydroxyethylamino)-9-methyladenine is the best substrate from all the cytokinins tested. Interestingly, oxygen was not required and hydrogen peroxide not produced during the catalytic reaction, so the enzyme behaves as a dehydrogenase rather than an oxidase. This was confirmed by the ability of the enzyme to transfer electrons to artificial electron acceptors, such as phenazine methosulfate and 2,6-dichlorophenol-indophenol. 2,3-Dimethoxy-5-methyl-1,4-benzoquinone, a precursor of the naturally occurring electron acceptor ubiquinone, readily interacts with the enzyme in micromolar concentrations. Typical flavoenzyme inhibitors such as acriflavine and diphenyleneiodonium inhibited this enzyme activity. Presence of the flavin cofactor in the enzyme was confirmed by differential pulse polarography and by measuring the fluorescence emission spectrum. Possible existence of a second redox centre is discussed.
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