Imaging the Binding Ability of Proteins Immobilized on Surfaces with Different Orientations by Using Liquid Crystals
- 30 June 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 126 (29) , 9024-9032
- https://doi.org/10.1021/ja0398565
Abstract
We report an investigation of the binding ability of a protein immobilized on surfaces with different orientations but in identical interfacial microenvironments. The surfaces present mixed self-assembled monolayers (SAMs) of 11-[19-carboxymethylhexa(ethylene glycol)]undecyl-1-thiol, 1, and 11-tetra(ethylene glycol) undecyl-1-thiol, 2. Whereas 2 is used to define an interfacial microenvironment that prevents nonspecific adsorption of proteins, 1 was activated by two different schemes to immobilize ribonuclease A (RNase A) in either a preferred orientation or random orientations. The binding of the ribonuclease inhibitor protein (RI) to RNase A on these surfaces was characterized by using ellipsometry and the orientational behavior of liquid crystals. Ellipsometric measurements indicate identical extents of immobilization of RNase A via the two schemes. Following incubation of both surfaces with RI, however, ellipsometric measurements indicate a 4-fold higher binding ability of the RNase A immobilized with a preferred orientation over RNase A immobilized with a random orientation. The higher binding ability of the oriented RNase A over the randomly oriented RNase A was also apparent in the orientational behavior of nematic liquid crystals of 4-cyano-4‘-pentylcyanobiphenyl (5CB) overlayed on these surfaces. These results demonstrate that the orientations of proteins covalently immobilized in controlled interfacial microenvironments can influence the binding activities of the immobilized proteins. Results reported in this article also demonstrate that the orientational states of proteins immobilized at surfaces can be distinguished by examining the optical appearances of liquid crystals.Keywords
This publication has 50 references indexed in Scilit:
- Surface-Driven Switching of Liquid Crystals Using Redox-Active Groups on ElectrodesScience, 2003
- Endowing Human Pancreatic Ribonuclease with Toxicity for Cancer CellsJournal of Biological Chemistry, 2001
- Cytochrome c Recognition of Immobilized, Orientational Variants of Cytochrome b5: Direct Force and Equilibrium Binding MeasurementsLangmuir, 1999
- Quantitative Characterization of Obliquely Deposited Substrates of Gold by Atomic Force Microscopy: Influence of Substrate Topography on Anchoring of Liquid CrystalsChemistry of Materials, 1999
- Optical Amplification of Ligand-Receptor Binding Using Liquid CrystalsScience, 1998
- Molecular Orientation Distributions in Protein Films. 4. A Multilayer Composed of Yeast Cytochrome c Bound through an Intermediate Streptavidin Layer to a Planar Supported Phospholipid BilayerJournal of the American Chemical Society, 1998
- Molecular Level Characterization of Microenvironmental Influences on the Properties of Immobilized ProteinsLangmuir, 1997
- Design of Surfaces for Patterned Alignment of Liquid Crystals on Planar and Curved SubstratesScience, 1997
- Molecular Orientation Distributions in Protein Films. 2. Site-Directed Immobilization of Yeast Cytochrome c on Thiol-Capped, Self-Assembled MonolayersJournal of the American Chemical Society, 1997
- Tight-binding inhibition of angiogenin and ribonuclease A by placental ribonuclease inhibitorBiochemistry, 1989