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The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies

The coordination between histidine-rich peptides and divalent cations supports the formation of nano- and micro-scale protein biomaterials, including toxic and non-toxic functional amyloids, which can be adapted as drug delivery systems. Among them, inclusion bodies (IBs) formed in recombinant bacte...

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Autores principales: Sánchez, Julieta María, Carratalá, José Vicente, Serna, Naroa, Unzueta, Ugutz, Nolan, Verónica, Sánchez-Chardi, Alejandro, Voltà-Durán, Eric, López-Laguna, Hèctor, Ferrer-Miralles, Neus, Villaverde, Antonio, Vazquez, Esther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8955739/
https://www.ncbi.nlm.nih.gov/pubmed/35335976
http://dx.doi.org/10.3390/pharmaceutics14030602
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author Sánchez, Julieta María
Carratalá, José Vicente
Serna, Naroa
Unzueta, Ugutz
Nolan, Verónica
Sánchez-Chardi, Alejandro
Voltà-Durán, Eric
López-Laguna, Hèctor
Ferrer-Miralles, Neus
Villaverde, Antonio
Vazquez, Esther
author_facet Sánchez, Julieta María
Carratalá, José Vicente
Serna, Naroa
Unzueta, Ugutz
Nolan, Verónica
Sánchez-Chardi, Alejandro
Voltà-Durán, Eric
López-Laguna, Hèctor
Ferrer-Miralles, Neus
Villaverde, Antonio
Vazquez, Esther
author_sort Sánchez, Julieta María
collection PubMed
description The coordination between histidine-rich peptides and divalent cations supports the formation of nano- and micro-scale protein biomaterials, including toxic and non-toxic functional amyloids, which can be adapted as drug delivery systems. Among them, inclusion bodies (IBs) formed in recombinant bacteria have shown promise as protein depots for time-sustained protein release. We have demonstrated here that the hexahistidine (H6) tag, fused to recombinant proteins, impacts both on the formation of bacterial IBs and on the conformation of the IB-forming protein, which shows a higher content of cross-beta intermolecular interactions in H6-tagged versions. Additionally, the addition of EDTA during the spontaneous disintegration of isolated IBs largely affects the protein leakage rate, again protein release being stimulated in His-tagged materials. This event depends on the number of His residues but irrespective of the location of the tag in the protein, as it occurs in either C-tagged or N-tagged proteins. The architectonic role of H6 in the formation of bacterial IBs, probably through coordination with divalent cations, offers an easy approach to manipulate protein leakage and to tailor the applicability of this material as a secretory amyloidal depot in different biomedical interfaces. In addition, the findings also offer a model to finely investigate, in a simple set-up, the mechanics of protein release from functional secretory amyloids.
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spelling pubmed-89557392022-03-26 The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies Sánchez, Julieta María Carratalá, José Vicente Serna, Naroa Unzueta, Ugutz Nolan, Verónica Sánchez-Chardi, Alejandro Voltà-Durán, Eric López-Laguna, Hèctor Ferrer-Miralles, Neus Villaverde, Antonio Vazquez, Esther Pharmaceutics Article The coordination between histidine-rich peptides and divalent cations supports the formation of nano- and micro-scale protein biomaterials, including toxic and non-toxic functional amyloids, which can be adapted as drug delivery systems. Among them, inclusion bodies (IBs) formed in recombinant bacteria have shown promise as protein depots for time-sustained protein release. We have demonstrated here that the hexahistidine (H6) tag, fused to recombinant proteins, impacts both on the formation of bacterial IBs and on the conformation of the IB-forming protein, which shows a higher content of cross-beta intermolecular interactions in H6-tagged versions. Additionally, the addition of EDTA during the spontaneous disintegration of isolated IBs largely affects the protein leakage rate, again protein release being stimulated in His-tagged materials. This event depends on the number of His residues but irrespective of the location of the tag in the protein, as it occurs in either C-tagged or N-tagged proteins. The architectonic role of H6 in the formation of bacterial IBs, probably through coordination with divalent cations, offers an easy approach to manipulate protein leakage and to tailor the applicability of this material as a secretory amyloidal depot in different biomedical interfaces. In addition, the findings also offer a model to finely investigate, in a simple set-up, the mechanics of protein release from functional secretory amyloids. MDPI 2022-03-10 /pmc/articles/PMC8955739/ /pubmed/35335976 http://dx.doi.org/10.3390/pharmaceutics14030602 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sánchez, Julieta María
Carratalá, José Vicente
Serna, Naroa
Unzueta, Ugutz
Nolan, Verónica
Sánchez-Chardi, Alejandro
Voltà-Durán, Eric
López-Laguna, Hèctor
Ferrer-Miralles, Neus
Villaverde, Antonio
Vazquez, Esther
The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies
title The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies
title_full The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies
title_fullStr The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies
title_full_unstemmed The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies
title_short The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies
title_sort poly-histidine tag h6 mediates structural and functional properties of disintegrating, protein-releasing inclusion bodies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8955739/
https://www.ncbi.nlm.nih.gov/pubmed/35335976
http://dx.doi.org/10.3390/pharmaceutics14030602
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