Electrostatic Orientation of Enzymes on Surfaces for Ligand Screening Probed by Force Spectroscopy
- 24 December 2005
- journal article
- letter
- Published by American Chemical Society (ACS) in Langmuir
- Vol. 22 (3) , 887-892
- https://doi.org/10.1021/la0525731
Abstract
In this letter, we show that electrostatic immobilization provides a simple but effective approach for the immobilization and orientation of carbonic anhydrase onto charged surfaces. The enzyme is oriented differently on oppositely charged surfaces, with the majority of active sites facing upward on a positively charged surface and downward on a negatively charged surface. An array of negatively charged microscale surface patterns within a positively charged background was prepared by microcontact printing and used as the substrate to immobilize the enzymes. This enabled the probing of the enzyme orientations on the two differently charged surface regions by force spectroscopy with the same atomic force microscopy (AFM) probe modified with a thiolated sulfonamide inhibitor. The unbinding forces between the inhibitor tip and the enzyme immobilized on the two differently charged surfaces were measured. Two control experiments, blocking of the enzyme active site with a competitive inhibitor and removal of the zinc ion from the enzyme catalytic center, were employed to distinguish between specific and nonspecific interactions and to further verify the differences in enzyme orientation. Autocorrelation analysis of the force histograms was carried out to evaluate the specific single enzyme-inhibitor interaction force.Keywords
This publication has 54 references indexed in Scilit:
- Force Microscopy Studies of Fibronectin Adsorption and Subsequent Cellular Adhesion to Substrates with Well-Defined Surface ChemistriesLangmuir, 2005
- Influence of Architecture on the Kinetic Stability of Molecular AssembliesJournal of the American Chemical Society, 2004
- Control of Protein Structure and Function through Surface Recognition by Tailored Nanoparticle ScaffoldsJournal of the American Chemical Society, 2004
- Single Complexation Force of 18-Crown-6 with Ammonium Ion Evaluated by Atomic Force MicroscopyJournal of the American Chemical Society, 2003
- Probing Specific Lectin-Carbohydrate Interactions Using Atomic Force Microscopy Imaging and Force MeasurementsLangmuir, 2002
- Force Spectroscopy of Molecular Systems—Single Molecule Spectroscopy of Polymers and BiomoleculesPublished by Wiley ,2000
- How Strong Is a Covalent Bond?Science, 1999
- Role of Surface Perfection in Chemical Force MicroscopyLangmuir, 1998
- Adhesion Forces Between Individual Ligand-Receptor PairsScience, 1994
- Structure of native and apo carbonic anhydrase II and structure of some of its anion-ligand complexesJournal of Molecular Biology, 1992