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Role of N-Terminal His(6)-Tags in Binding and Efficient Translocation of Polypeptides into Cells Using Anthrax Protective Antigen (PA)

It is of interest to define bacterial toxin biochemical properties to use them as molecular-syringe devices in order to deliver enzymatic activities into host cells. Binary toxins of the AB(7/8)-type are among the most potent and specialized bacterial protein toxins. The B subunits oligomerize to fo...

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Autores principales: Beitzinger, Christoph, Stefani, Caroline, Kronhardt, Angelika, Rolando, Monica, Flatau, Gilles, Lemichez, Emmanuel, Benz, Roland
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3466187/
https://www.ncbi.nlm.nih.gov/pubmed/23056543
http://dx.doi.org/10.1371/journal.pone.0046964
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author Beitzinger, Christoph
Stefani, Caroline
Kronhardt, Angelika
Rolando, Monica
Flatau, Gilles
Lemichez, Emmanuel
Benz, Roland
author_facet Beitzinger, Christoph
Stefani, Caroline
Kronhardt, Angelika
Rolando, Monica
Flatau, Gilles
Lemichez, Emmanuel
Benz, Roland
author_sort Beitzinger, Christoph
collection PubMed
description It is of interest to define bacterial toxin biochemical properties to use them as molecular-syringe devices in order to deliver enzymatic activities into host cells. Binary toxins of the AB(7/8)-type are among the most potent and specialized bacterial protein toxins. The B subunits oligomerize to form a pore that binds with high affinity host cell receptors and the enzymatic A subunit. This allows the endocytosis of the complex and subsequent injection of the A subunit into the cytosol of the host cells. Here we report that the addition of an N-terminal His(6)-tag to different proteins increased their binding affinity to the protective antigen (PA) PA(63)-channels, irrespective if they are related (C2I) or unrelated (gpJ, EDIN) to the AB(7/8)-family of toxins. His(6)-EDIN exhibited voltage-dependent increase of the stability constant for binding by a factor of about 25 when the trans-side corresponding to the cell interior was set to −70 mV. Surprisingly, the C. botulinum toxin C2II-channel did not share this feature of PA(63). Cell-based experiments demonstrated that addition of an N-terminal His(6)-tag promoted also intoxication of endothelial cells by C2I or EDIN via PA(63). Our results revealed that addition of His(6)-tags to several factors increase their binding properties to PA(63) and enhance the property to intoxicate cells.
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spelling pubmed-34661872012-10-10 Role of N-Terminal His(6)-Tags in Binding and Efficient Translocation of Polypeptides into Cells Using Anthrax Protective Antigen (PA) Beitzinger, Christoph Stefani, Caroline Kronhardt, Angelika Rolando, Monica Flatau, Gilles Lemichez, Emmanuel Benz, Roland PLoS One Research Article It is of interest to define bacterial toxin biochemical properties to use them as molecular-syringe devices in order to deliver enzymatic activities into host cells. Binary toxins of the AB(7/8)-type are among the most potent and specialized bacterial protein toxins. The B subunits oligomerize to form a pore that binds with high affinity host cell receptors and the enzymatic A subunit. This allows the endocytosis of the complex and subsequent injection of the A subunit into the cytosol of the host cells. Here we report that the addition of an N-terminal His(6)-tag to different proteins increased their binding affinity to the protective antigen (PA) PA(63)-channels, irrespective if they are related (C2I) or unrelated (gpJ, EDIN) to the AB(7/8)-family of toxins. His(6)-EDIN exhibited voltage-dependent increase of the stability constant for binding by a factor of about 25 when the trans-side corresponding to the cell interior was set to −70 mV. Surprisingly, the C. botulinum toxin C2II-channel did not share this feature of PA(63). Cell-based experiments demonstrated that addition of an N-terminal His(6)-tag promoted also intoxication of endothelial cells by C2I or EDIN via PA(63). Our results revealed that addition of His(6)-tags to several factors increase their binding properties to PA(63) and enhance the property to intoxicate cells. Public Library of Science 2012-10-08 /pmc/articles/PMC3466187/ /pubmed/23056543 http://dx.doi.org/10.1371/journal.pone.0046964 Text en © 2012 Beitzinger et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Beitzinger, Christoph
Stefani, Caroline
Kronhardt, Angelika
Rolando, Monica
Flatau, Gilles
Lemichez, Emmanuel
Benz, Roland
Role of N-Terminal His(6)-Tags in Binding and Efficient Translocation of Polypeptides into Cells Using Anthrax Protective Antigen (PA)
title Role of N-Terminal His(6)-Tags in Binding and Efficient Translocation of Polypeptides into Cells Using Anthrax Protective Antigen (PA)
title_full Role of N-Terminal His(6)-Tags in Binding and Efficient Translocation of Polypeptides into Cells Using Anthrax Protective Antigen (PA)
title_fullStr Role of N-Terminal His(6)-Tags in Binding and Efficient Translocation of Polypeptides into Cells Using Anthrax Protective Antigen (PA)
title_full_unstemmed Role of N-Terminal His(6)-Tags in Binding and Efficient Translocation of Polypeptides into Cells Using Anthrax Protective Antigen (PA)
title_short Role of N-Terminal His(6)-Tags in Binding and Efficient Translocation of Polypeptides into Cells Using Anthrax Protective Antigen (PA)
title_sort role of n-terminal his(6)-tags in binding and efficient translocation of polypeptides into cells using anthrax protective antigen (pa)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3466187/
https://www.ncbi.nlm.nih.gov/pubmed/23056543
http://dx.doi.org/10.1371/journal.pone.0046964
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