Bioconjugate Chemistry · 2009 · 24 citations · 54 references
Whether assembling proteins onto nanoscale, mesoscopic, or macroscropic material surfaces, maintaining a protein's structure and function when conjugated to a surface is complicated by the high propensity for electrostatic or hydrophobic surface interactions and the possibility of direct metal coordination of protein functional groups. In this study, the assembly of a 1.5 nm CAAKA passivated gold nanoparticle (AuNP) onto FGF1 (human acidic fibroblast growth factor) using an amino terminal His(6) tag is analyzed. The impact of structure and time-dependent changes in the structural elements in FGF1and FGF1-heparin in the presence of the AuNP is probed by a molecular beacon fluorescence assay, circular dichroism, and NMR spectroscopy. Analysis of the results indicates that a time-dependent evolution of the protein structure without loss of FGF1 heparin binding occurs following the formation of the initial FGF1-AuNP complex. The time-dependent changes are believed to reflect protein sampling of the AuNP surface to minimize the free energy of the AuNP-FGF1 complex without impacting FGF1 function.
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Narasimha Sreerama, Robert W. Woody · Analytical Biochemistry · 2000 · 3K citations
Biochemistry, Biomolecular Structure Prediction, Protein Folding +13
Self-assembled nanoscale biosensors based on quantum dot FRET donors
Igor L. Medintz, Aaron R. Clapp, Hedi Mattoussi et al. · Nature Materials · 2003 · 1.6K citations
Probing BSA Binding to Citrate-Coated Gold Nanoparticles and Surfaces
Scott H. Brewer, Wilhelm R. Glomm, Marcus C. Johnson et al. · Langmuir · 2005 · 883 citations