Publication | Open Access
A Novel Immunological Approach Establishes That the Auxin-binding Protein, Nt-abp1, Is an Element Involved in Auxin Signaling at the Plasma Membrane
100
Citations
35
References
1999
Year
Protein AssemblyImmunologyMolecular BiologyCellular PhysiologyProtein FoldingCell InteractionAuxin SignalingFolded ProteinProteomicsCell SignalingProtein FunctionBiochemistryPlasma MembraneMonoclonal AntibodiesBiomolecular InteractionSurface Plasmon ResonanceGene ExpressionAuxin-binding ProteinCell BiologyPlant HormoneSignal TransductionNatural SciencesProtein EngineeringCellular BiochemistrySystems BiologyMedicine
Interactions of a collection of monoclonal antibodies (mAbs) to the recombinant Nicotiana tabacum auxin-binding protein 1 (Nt-abp1) were extensively characterized using surface plasmon resonance. Dynamic interaction studies using combinations of Nt-abp1, synthetic peptides corresponding to conserved sequences within auxin-binding proteins, and the mAbs have shown that a number of the mAbs recognized discontinuous epitopes revealing the junction of distinct domains in the folded protein. In particular, the two putative auxin binding domains and the C terminus of the protein were shown to interact with each other in the folded protein. Using the auxin-induced electrical response of tobacco protoplasts as a functional assay, all the mAbs exhibited either auxin antagonist or hormonomimetic properties. These effects, measured for the first time in homologous conditions, confirm that Nt-abp1 is present at the plasma membrane and is involved in the activation of the auxin-dependent electrical response of tobacco protoplasts. Based on our surface plasmon resonance data, we propose that the key event leading to the activation of this auxin electrical response consists of a conformational change in Nt-abp1.
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