
doi: 10.1093/pcp/pcq163
pmid: 21047814
We identified two phenylquinazoline compounds in a large-scale screening for cytokinin antagonists in yeast expressing the Arabidopsis cytokinin receptor cytokinin response 1/histidine kinase 4 (CRE1). After chemical modifications, we obtained compound S-4893, which non-competitively inhibited binding of the natural ligand 2-isopentenyladenine to CRE1. S-4893 antagonized cytokinin-induced activation of the Arabidopsis response regulator 5 promoter in Arabidopsis. Importantly, S-4893 had no detectable intrinsic cytokinin agonist activity in Arabidopsis or in the transformed yeast system. Cytokinin bioassay further demonstrated that S-4893 antagonized cytokinin-induced stimulation of callus formation and inhibition of root elongation. S-4893 also promoted seminal, crown and lateral root growth in rice, suggesting that S-4893 could potentially promote root growth in a variety of agronomically important plants. We believe S-4893 will be a useful tool in functional studies of cytokinin action in a wide range of plants and a lead compound for the development of useful root growth promoters in agriculture.
Cytokinins, Arabidopsis Proteins, Arabidopsis, Drug Evaluation, Preclinical, Oryza, Receptors, Cell Surface, Plants, Genetically Modified, Plant Roots, Small Molecule Libraries, Isopentenyladenosine, Plant Growth Regulators, Seedlings, Yeasts, Quinazolines, Protein Kinases, Protein Binding, Signal Transduction
Cytokinins, Arabidopsis Proteins, Arabidopsis, Drug Evaluation, Preclinical, Oryza, Receptors, Cell Surface, Plants, Genetically Modified, Plant Roots, Small Molecule Libraries, Isopentenyladenosine, Plant Growth Regulators, Seedlings, Yeasts, Quinazolines, Protein Kinases, Protein Binding, Signal Transduction
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