Nano Letters · 2006 · 124 citations · 29 references
Atomic Force MicroscopyProtein AssemblyPeptide EngineeringCell AdhesionProtein FoldingMechanism Underlying SpecificityBiophysicsMaterials ScienceProtein ChemistryBiochemistrySurface FunctionalizationNatural SciencesMetalloproteinSurface ScienceAdhesive MaterialProtein EngineeringTi-binding PeptideMedicineAdhesion Force Analysis
Adhesion force analysis using atomic force microscopy clearly revealed for the first time the mechanism underlying the specific binding between a titanium surface and ferritin possessing the sequence of Ti-binding peptide in its N-terminal domain. Our results proved that the specific binding is due to double electrostatic bonds between charged residue and surface groups of the substrate. Furthermore, it is also demonstrated that the accretion of surfactant reduces nonspecific interactions, dramatically enhancing the selectivity and specificity of Ti-binding peptide.
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