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Fluorogen Activating Protein–Affibody Probes: Modular, No-Wash Measurement of Epidermal Growth Factor Receptors

[Image: see text] Fluorescence is essential for dynamic live cell imaging, and affinity reagents are required for quantification of endogenous proteins. Various fluorescent dyes can report on different aspects of biological trafficking, but must be independently conjugated to affinity reagents and c...

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Autores principales: Wang, Yi, Telmer, Cheryl A., Schmidt, Brigitte F., Franke, Josef D., Ort, Stephan, Arndt-Jovin, Donna J., Bruchez, Marcel P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4306507/
https://www.ncbi.nlm.nih.gov/pubmed/25490520
http://dx.doi.org/10.1021/bc500525b
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author Wang, Yi
Telmer, Cheryl A.
Schmidt, Brigitte F.
Franke, Josef D.
Ort, Stephan
Arndt-Jovin, Donna J.
Bruchez, Marcel P.
author_facet Wang, Yi
Telmer, Cheryl A.
Schmidt, Brigitte F.
Franke, Josef D.
Ort, Stephan
Arndt-Jovin, Donna J.
Bruchez, Marcel P.
author_sort Wang, Yi
collection PubMed
description [Image: see text] Fluorescence is essential for dynamic live cell imaging, and affinity reagents are required for quantification of endogenous proteins. Various fluorescent dyes can report on different aspects of biological trafficking, but must be independently conjugated to affinity reagents and characterized for specific biological readouts. Here we present the characterization of a new modular platform for small anti-EGFR affinity probes for studying rapid changes in receptor pools. A protein domain (FAP (dL5**)) that binds to malachite-green (MG) derivatives for fluorescence activation was expressed as a recombinant fusion to one or two copies of the compact EGFR binding affibody Z(EGFR:1907). This is a recombinant and fluorogenic labeling reagent for native EGFR molecules. In vitro fluorescence assays demonstrated that the binding of these dyes to the FAP–affibody fusions produced thousand-fold fluorescence enhancements, with high binding affinity and fast association rates. Flow cytometry assays and fluorescence microscopy demonstrated that these probes label endogenous EGFR on A431 cells without disruption of EGFR function, and low nanomolar surface K(d) values were observed with the double-Z(EGFR:1907) constructs. The application of light-harvesting fluorogens (dyedrons) significantly improved the detected fluorescence signal. Altering the order of addition of the ligand, probe, and dyes allowed differentiation between surface and endocytotic pools of receptors to reveal the rapid dynamics of endocytic trafficking. Therefore, FAP/affibody coupling provides a new approach to construct compact and modular affinity probes that label endogenous proteins on living cells and can be used for studying rapid changes in receptor pools involved in trafficking.
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spelling pubmed-43065072015-12-09 Fluorogen Activating Protein–Affibody Probes: Modular, No-Wash Measurement of Epidermal Growth Factor Receptors Wang, Yi Telmer, Cheryl A. Schmidt, Brigitte F. Franke, Josef D. Ort, Stephan Arndt-Jovin, Donna J. Bruchez, Marcel P. Bioconjug Chem [Image: see text] Fluorescence is essential for dynamic live cell imaging, and affinity reagents are required for quantification of endogenous proteins. Various fluorescent dyes can report on different aspects of biological trafficking, but must be independently conjugated to affinity reagents and characterized for specific biological readouts. Here we present the characterization of a new modular platform for small anti-EGFR affinity probes for studying rapid changes in receptor pools. A protein domain (FAP (dL5**)) that binds to malachite-green (MG) derivatives for fluorescence activation was expressed as a recombinant fusion to one or two copies of the compact EGFR binding affibody Z(EGFR:1907). This is a recombinant and fluorogenic labeling reagent for native EGFR molecules. In vitro fluorescence assays demonstrated that the binding of these dyes to the FAP–affibody fusions produced thousand-fold fluorescence enhancements, with high binding affinity and fast association rates. Flow cytometry assays and fluorescence microscopy demonstrated that these probes label endogenous EGFR on A431 cells without disruption of EGFR function, and low nanomolar surface K(d) values were observed with the double-Z(EGFR:1907) constructs. The application of light-harvesting fluorogens (dyedrons) significantly improved the detected fluorescence signal. Altering the order of addition of the ligand, probe, and dyes allowed differentiation between surface and endocytotic pools of receptors to reveal the rapid dynamics of endocytic trafficking. Therefore, FAP/affibody coupling provides a new approach to construct compact and modular affinity probes that label endogenous proteins on living cells and can be used for studying rapid changes in receptor pools involved in trafficking. American Chemical Society 2014-12-09 2015-01-21 /pmc/articles/PMC4306507/ /pubmed/25490520 http://dx.doi.org/10.1021/bc500525b Text en Copyright © 2014 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Wang, Yi
Telmer, Cheryl A.
Schmidt, Brigitte F.
Franke, Josef D.
Ort, Stephan
Arndt-Jovin, Donna J.
Bruchez, Marcel P.
Fluorogen Activating Protein–Affibody Probes: Modular, No-Wash Measurement of Epidermal Growth Factor Receptors
title Fluorogen Activating Protein–Affibody Probes: Modular, No-Wash Measurement of Epidermal Growth Factor Receptors
title_full Fluorogen Activating Protein–Affibody Probes: Modular, No-Wash Measurement of Epidermal Growth Factor Receptors
title_fullStr Fluorogen Activating Protein–Affibody Probes: Modular, No-Wash Measurement of Epidermal Growth Factor Receptors
title_full_unstemmed Fluorogen Activating Protein–Affibody Probes: Modular, No-Wash Measurement of Epidermal Growth Factor Receptors
title_short Fluorogen Activating Protein–Affibody Probes: Modular, No-Wash Measurement of Epidermal Growth Factor Receptors
title_sort fluorogen activating protein–affibody probes: modular, no-wash measurement of epidermal growth factor receptors
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4306507/
https://www.ncbi.nlm.nih.gov/pubmed/25490520
http://dx.doi.org/10.1021/bc500525b
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