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Oriented Protein Immobilization using Covalent and Noncovalent Chemistry on a Thiol-Reactive Self-Reporting Surface

Authors :
Wasserberg, D.
Nicosia, C.
Tromp, E.E.
Subramaniam, V.
Huskens, J.
Jonkheijm, P.
Wasserberg, D.
Nicosia, C.
Tromp, E.E.
Subramaniam, V.
Huskens, J.
Jonkheijm, P.
Source :
Journal of the American Chemical Society; 3104; 11; 0002-7863; 8; 135; ~Journal of the American Chemical Society~3104~11~~~0002-7863~8~135~~
Publication Year :
2013

Abstract

Item does not contain fulltext<br />We report the fabrication of a patterned protein array using three orthogonal methods of immobilization that are detected exploiting a fluorogenic surface. Upon reaction of thiols, the fluorogenic tether reports the bond formation by an instantaneous rise in (blue) fluorescence intensity providing a means to visualize the immobilization even of nonfluorescent biomolecules. First, the covalent, oriented immobilization of a visible fluorescent protein (TFP) modified to display a single cysteine residue was detected. Colocalization of the fluorescence of the immobilized TFP and the fluorogenic group provided a direct tool to distinguish covalent bond formation from physisorption of proteins. Subsequent orthogonal immobilization of thiol-functionalized biomolecules could be conveniently detected by fluorescence microscopy using the fluorogenic surface. A thiol-modified nitrilotriacetate ligand was immobilized for binding of hexahistidine-tagged red-fluorescing TagRFP, while an appropriately modified biotin was immobilized for binding of Cy5-labeled streptavidin.

Details

Database :
OAIster
Journal :
Journal of the American Chemical Society; 3104; 11; 0002-7863; 8; 135; ~Journal of the American Chemical Society~3104~11~~~0002-7863~8~135~~
Publication Type :
Electronic Resource
Accession number :
edsoai.on1366792296
Document Type :
Electronic Resource