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Plug-and-Play Pairing via Defined Divalent Streptavidins()

Streptavidin is one of the most important hubs for molecular biology, either multimerizing biomolecules, bridging one molecule to another, or anchoring to a biotinylated surface/nanoparticle. Streptavidin has the advantage of rapid ultra-stable binding to biotin. However, the ability of streptavidin...

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Autores principales: Fairhead, Michael, Krndija, Denis, Lowe, Ed D., Howarth, Mark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4047826/
https://www.ncbi.nlm.nih.gov/pubmed/24056174
http://dx.doi.org/10.1016/j.jmb.2013.09.016
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author Fairhead, Michael
Krndija, Denis
Lowe, Ed D.
Howarth, Mark
author_facet Fairhead, Michael
Krndija, Denis
Lowe, Ed D.
Howarth, Mark
author_sort Fairhead, Michael
collection PubMed
description Streptavidin is one of the most important hubs for molecular biology, either multimerizing biomolecules, bridging one molecule to another, or anchoring to a biotinylated surface/nanoparticle. Streptavidin has the advantage of rapid ultra-stable binding to biotin. However, the ability of streptavidin to bind four biotinylated molecules in a heterogeneous manner is often limiting. Here, we present an efficient approach to isolate streptavidin tetramers with two biotin-binding sites in a precise arrangement, cis or trans. We genetically modified specific subunits with negatively charged tags, refolded a mixture of monomers, and used ion-exchange chromatography to resolve tetramers according to the number and orientation of tags. We solved the crystal structures of cis-divalent streptavidin to 1.4 Å resolution and trans-divalent streptavidin to 1.6 Å resolution, validating the isolation strategy and explaining the behavior of the Dead streptavidin variant. cis- and trans-divalent streptavidins retained tetravalent streptavidin's high thermostability and low off-rate. These defined divalent streptavidins enabled us to uncover how streptavidin binding depends on the nature of the biotin ligand. Biotinylated DNA showed strong negative cooperativity of binding to cis-divalent but not trans-divalent streptavidin. A small biotinylated protein bound readily to cis and trans binding sites. We also solved the structure of trans-divalent streptavidin bound to biotin-4-fluorescein, showing how one ligand obstructs binding to an adjacent biotin-binding site. Using a hexaglutamate tag proved a more powerful way to isolate monovalent streptavidin, for ultra-stable labeling without undesired clustering. These forms of streptavidin allow this key hub to be used with a new level of precision, for homogeneous molecular assembly.
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spelling pubmed-40478262014-06-10 Plug-and-Play Pairing via Defined Divalent Streptavidins() Fairhead, Michael Krndija, Denis Lowe, Ed D. Howarth, Mark J Mol Biol Article Streptavidin is one of the most important hubs for molecular biology, either multimerizing biomolecules, bridging one molecule to another, or anchoring to a biotinylated surface/nanoparticle. Streptavidin has the advantage of rapid ultra-stable binding to biotin. However, the ability of streptavidin to bind four biotinylated molecules in a heterogeneous manner is often limiting. Here, we present an efficient approach to isolate streptavidin tetramers with two biotin-binding sites in a precise arrangement, cis or trans. We genetically modified specific subunits with negatively charged tags, refolded a mixture of monomers, and used ion-exchange chromatography to resolve tetramers according to the number and orientation of tags. We solved the crystal structures of cis-divalent streptavidin to 1.4 Å resolution and trans-divalent streptavidin to 1.6 Å resolution, validating the isolation strategy and explaining the behavior of the Dead streptavidin variant. cis- and trans-divalent streptavidins retained tetravalent streptavidin's high thermostability and low off-rate. These defined divalent streptavidins enabled us to uncover how streptavidin binding depends on the nature of the biotin ligand. Biotinylated DNA showed strong negative cooperativity of binding to cis-divalent but not trans-divalent streptavidin. A small biotinylated protein bound readily to cis and trans binding sites. We also solved the structure of trans-divalent streptavidin bound to biotin-4-fluorescein, showing how one ligand obstructs binding to an adjacent biotin-binding site. Using a hexaglutamate tag proved a more powerful way to isolate monovalent streptavidin, for ultra-stable labeling without undesired clustering. These forms of streptavidin allow this key hub to be used with a new level of precision, for homogeneous molecular assembly. Elsevier 2014-01-09 /pmc/articles/PMC4047826/ /pubmed/24056174 http://dx.doi.org/10.1016/j.jmb.2013.09.016 Text en © 2013 The Authors http://creativecommons.org/licenses/by/3.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Fairhead, Michael
Krndija, Denis
Lowe, Ed D.
Howarth, Mark
Plug-and-Play Pairing via Defined Divalent Streptavidins()
title Plug-and-Play Pairing via Defined Divalent Streptavidins()
title_full Plug-and-Play Pairing via Defined Divalent Streptavidins()
title_fullStr Plug-and-Play Pairing via Defined Divalent Streptavidins()
title_full_unstemmed Plug-and-Play Pairing via Defined Divalent Streptavidins()
title_short Plug-and-Play Pairing via Defined Divalent Streptavidins()
title_sort plug-and-play pairing via defined divalent streptavidins()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4047826/
https://www.ncbi.nlm.nih.gov/pubmed/24056174
http://dx.doi.org/10.1016/j.jmb.2013.09.016
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