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SpyAvidin Hubs Enable Precise and Ultrastable Orthogonal Nanoassembly

[Image: see text] The capture of biotin by streptavidin is an inspiration for supramolecular chemistry and a central tool for biological chemistry and nanotechnology, because of the rapid and exceptionally stable interaction. However, there is no robust orthogonal interaction to this hub, limiting t...

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Autores principales: Fairhead, Michael, Veggiani, Gianluca, Lever, Melissa, Yan, Jun, Mesner, Dejan, Robinson, Carol V., Dushek, Omer, van der Merwe, P. Anton, Howarth, Mark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4183622/
https://www.ncbi.nlm.nih.gov/pubmed/25111182
http://dx.doi.org/10.1021/ja505584f
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author Fairhead, Michael
Veggiani, Gianluca
Lever, Melissa
Yan, Jun
Mesner, Dejan
Robinson, Carol V.
Dushek, Omer
van der Merwe, P. Anton
Howarth, Mark
author_facet Fairhead, Michael
Veggiani, Gianluca
Lever, Melissa
Yan, Jun
Mesner, Dejan
Robinson, Carol V.
Dushek, Omer
van der Merwe, P. Anton
Howarth, Mark
author_sort Fairhead, Michael
collection PubMed
description [Image: see text] The capture of biotin by streptavidin is an inspiration for supramolecular chemistry and a central tool for biological chemistry and nanotechnology, because of the rapid and exceptionally stable interaction. However, there is no robust orthogonal interaction to this hub, limiting the size and complexity of molecular assemblies that can be created. Here we combined traptavidin (a streptavidin variant maximizing biotin binding strength) with an orthogonal irreversible interaction. SpyTag is a peptide engineered to form a spontaneous isopeptide bond to its protein partner SpyCatcher. SpyTag or SpyCatcher was successfully fused to the C-terminus of Dead streptavidin subunits. We were able to generate chimeric tetramers with n (0 ≤ n ≤ 4) biotin binding sites and 4-n SpyTag or SpyCatcher binding sites. Chimeric SpyAvidin tetramers bound precise numbers of ligands fused to biotin or SpyTag/SpyCatcher. Mixing chimeric tetramers enabled assembly of SpyAvidin octamers (8 subunits) or eicosamers (20 subunits). We validated assemblies using electrophoresis and native mass spectrometry. Eicosameric SpyAvidin was used to cluster trimeric major histocompatibility complex (MHC) class I:β(2)-microglobulin:peptide complexes, generating an assembly with up to 56 components. MHC eicosamers surpassed the conventional MHC tetramers in acting as a powerful stimulus to T cell signaling. Combining ultrastable noncovalent with irreversible covalent interaction, SpyAvidins enable a simple route to create robust nanoarchitectures.
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spelling pubmed-41836222014-10-03 SpyAvidin Hubs Enable Precise and Ultrastable Orthogonal Nanoassembly Fairhead, Michael Veggiani, Gianluca Lever, Melissa Yan, Jun Mesner, Dejan Robinson, Carol V. Dushek, Omer van der Merwe, P. Anton Howarth, Mark J Am Chem Soc [Image: see text] The capture of biotin by streptavidin is an inspiration for supramolecular chemistry and a central tool for biological chemistry and nanotechnology, because of the rapid and exceptionally stable interaction. However, there is no robust orthogonal interaction to this hub, limiting the size and complexity of molecular assemblies that can be created. Here we combined traptavidin (a streptavidin variant maximizing biotin binding strength) with an orthogonal irreversible interaction. SpyTag is a peptide engineered to form a spontaneous isopeptide bond to its protein partner SpyCatcher. SpyTag or SpyCatcher was successfully fused to the C-terminus of Dead streptavidin subunits. We were able to generate chimeric tetramers with n (0 ≤ n ≤ 4) biotin binding sites and 4-n SpyTag or SpyCatcher binding sites. Chimeric SpyAvidin tetramers bound precise numbers of ligands fused to biotin or SpyTag/SpyCatcher. Mixing chimeric tetramers enabled assembly of SpyAvidin octamers (8 subunits) or eicosamers (20 subunits). We validated assemblies using electrophoresis and native mass spectrometry. Eicosameric SpyAvidin was used to cluster trimeric major histocompatibility complex (MHC) class I:β(2)-microglobulin:peptide complexes, generating an assembly with up to 56 components. MHC eicosamers surpassed the conventional MHC tetramers in acting as a powerful stimulus to T cell signaling. Combining ultrastable noncovalent with irreversible covalent interaction, SpyAvidins enable a simple route to create robust nanoarchitectures. American Chemical Society 2014-08-11 2014-09-03 /pmc/articles/PMC4183622/ /pubmed/25111182 http://dx.doi.org/10.1021/ja505584f Text en Copyright © 2014 American Chemical Society Terms of Use CC-BY (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html)
spellingShingle Fairhead, Michael
Veggiani, Gianluca
Lever, Melissa
Yan, Jun
Mesner, Dejan
Robinson, Carol V.
Dushek, Omer
van der Merwe, P. Anton
Howarth, Mark
SpyAvidin Hubs Enable Precise and Ultrastable Orthogonal Nanoassembly
title SpyAvidin Hubs Enable Precise and Ultrastable Orthogonal Nanoassembly
title_full SpyAvidin Hubs Enable Precise and Ultrastable Orthogonal Nanoassembly
title_fullStr SpyAvidin Hubs Enable Precise and Ultrastable Orthogonal Nanoassembly
title_full_unstemmed SpyAvidin Hubs Enable Precise and Ultrastable Orthogonal Nanoassembly
title_short SpyAvidin Hubs Enable Precise and Ultrastable Orthogonal Nanoassembly
title_sort spyavidin hubs enable precise and ultrastable orthogonal nanoassembly
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4183622/
https://www.ncbi.nlm.nih.gov/pubmed/25111182
http://dx.doi.org/10.1021/ja505584f
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