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Modification of bacterial microcompartments with target biomolecules via post-translational SpyTagging

Bacterial microcompartments (BMCs) are proteinaceous organelle-like structures formed within bacteria, often encapsulating enzymes and cellular processes, in particular, allowing toxic intermediates to be shielded from the general cellular environment. Outside of their biological role they are of in...

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Autores principales: Beal, David M, Liang, Mingzhi, Brown, Ian, Budge, James D, Burrows, Emily R, Howland, Kevin, Lee, Phoebe, Martin, Sarah, Morrell, Andrew, Nemoto-Smith, Emi, Roobol, Joanne, Stanley, Maria, Smales, C Mark, Warren, Martin J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10350929/
https://www.ncbi.nlm.nih.gov/pubmed/37465645
http://dx.doi.org/10.1039/d3ma00071k
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author Beal, David M
Liang, Mingzhi
Brown, Ian
Budge, James D
Burrows, Emily R
Howland, Kevin
Lee, Phoebe
Martin, Sarah
Morrell, Andrew
Nemoto-Smith, Emi
Roobol, Joanne
Stanley, Maria
Smales, C Mark
Warren, Martin J
author_facet Beal, David M
Liang, Mingzhi
Brown, Ian
Budge, James D
Burrows, Emily R
Howland, Kevin
Lee, Phoebe
Martin, Sarah
Morrell, Andrew
Nemoto-Smith, Emi
Roobol, Joanne
Stanley, Maria
Smales, C Mark
Warren, Martin J
author_sort Beal, David M
collection PubMed
description Bacterial microcompartments (BMCs) are proteinaceous organelle-like structures formed within bacteria, often encapsulating enzymes and cellular processes, in particular, allowing toxic intermediates to be shielded from the general cellular environment. Outside of their biological role they are of interest, through surface modification, as potential drug carriers and polyvalent antigen display scaffolds. Here we use a post-translational modification approach, using copper free click chemistry, to attach a SpyTag to a target protein molecule for attachment to a specific SpyCatcher modified BMC shell protein. We demonstrate that a post-translationally SpyTagged material can react with a SpyCatcher modified BMC and show its presence on the surface of BMCs, enabling future investigation of these structures as polyvalent antigen display scaffolds for vaccine development. This post-translational ‘click’ methodology overcomes the necessity to genetically encode the SpyTag, avoids any potential reduction in expression yield and expands the scope of SpyTag/SpyCatcher vaccine scaffolds to form peptide epitope vaccines and small molecule delivery agents.
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spelling pubmed-103509292023-07-18 Modification of bacterial microcompartments with target biomolecules via post-translational SpyTagging Beal, David M Liang, Mingzhi Brown, Ian Budge, James D Burrows, Emily R Howland, Kevin Lee, Phoebe Martin, Sarah Morrell, Andrew Nemoto-Smith, Emi Roobol, Joanne Stanley, Maria Smales, C Mark Warren, Martin J Mater Adv Chemistry Bacterial microcompartments (BMCs) are proteinaceous organelle-like structures formed within bacteria, often encapsulating enzymes and cellular processes, in particular, allowing toxic intermediates to be shielded from the general cellular environment. Outside of their biological role they are of interest, through surface modification, as potential drug carriers and polyvalent antigen display scaffolds. Here we use a post-translational modification approach, using copper free click chemistry, to attach a SpyTag to a target protein molecule for attachment to a specific SpyCatcher modified BMC shell protein. We demonstrate that a post-translationally SpyTagged material can react with a SpyCatcher modified BMC and show its presence on the surface of BMCs, enabling future investigation of these structures as polyvalent antigen display scaffolds for vaccine development. This post-translational ‘click’ methodology overcomes the necessity to genetically encode the SpyTag, avoids any potential reduction in expression yield and expands the scope of SpyTag/SpyCatcher vaccine scaffolds to form peptide epitope vaccines and small molecule delivery agents. RSC 2023-06-12 /pmc/articles/PMC10350929/ /pubmed/37465645 http://dx.doi.org/10.1039/d3ma00071k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Beal, David M
Liang, Mingzhi
Brown, Ian
Budge, James D
Burrows, Emily R
Howland, Kevin
Lee, Phoebe
Martin, Sarah
Morrell, Andrew
Nemoto-Smith, Emi
Roobol, Joanne
Stanley, Maria
Smales, C Mark
Warren, Martin J
Modification of bacterial microcompartments with target biomolecules via post-translational SpyTagging
title Modification of bacterial microcompartments with target biomolecules via post-translational SpyTagging
title_full Modification of bacterial microcompartments with target biomolecules via post-translational SpyTagging
title_fullStr Modification of bacterial microcompartments with target biomolecules via post-translational SpyTagging
title_full_unstemmed Modification of bacterial microcompartments with target biomolecules via post-translational SpyTagging
title_short Modification of bacterial microcompartments with target biomolecules via post-translational SpyTagging
title_sort modification of bacterial microcompartments with target biomolecules via post-translational spytagging
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10350929/
https://www.ncbi.nlm.nih.gov/pubmed/37465645
http://dx.doi.org/10.1039/d3ma00071k
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