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Stabilization of the CD81 Large Extracellular Loop with De Novo Disulfide Bonds Improves Its Amenability for Peptide Grafting

Tetraspan proteins are significantly enriched in the membranes of exosomal vesicles (EVs) and their extracellular domains are attractive targets for engineering towards specific antigen recognition units. To enhance the tolerance of a tetraspanin fold to modification, we achieved significant thermal...

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Autores principales: Vogt, Stefan, Stadlmayr, Gerhard, Stadlbauer, Katharina, Sádio, Flávio, Andorfer, Peter, Grillari, Johannes, Rüker, Florian, Wozniak-Knopp, Gordana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6160918/
https://www.ncbi.nlm.nih.gov/pubmed/30150531
http://dx.doi.org/10.3390/pharmaceutics10030138
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author Vogt, Stefan
Stadlmayr, Gerhard
Stadlbauer, Katharina
Sádio, Flávio
Andorfer, Peter
Grillari, Johannes
Rüker, Florian
Wozniak-Knopp, Gordana
author_facet Vogt, Stefan
Stadlmayr, Gerhard
Stadlbauer, Katharina
Sádio, Flávio
Andorfer, Peter
Grillari, Johannes
Rüker, Florian
Wozniak-Knopp, Gordana
author_sort Vogt, Stefan
collection PubMed
description Tetraspan proteins are significantly enriched in the membranes of exosomal vesicles (EVs) and their extracellular domains are attractive targets for engineering towards specific antigen recognition units. To enhance the tolerance of a tetraspanin fold to modification, we achieved significant thermal stabilization of the human CD81 large extracellular loop (hCD81 LEL) via de novo disulfide bonds. The best mutants were shown to exhibit a positive shift in the melting temperature (T(m)) of up to 25 °C. The combination of two most potent disulfide bonds connecting different strands of the protein resulted in a mutant with a T(m) of 109 °C, 43 °C over the T(m) of the wild-type hCD81 LEL. A peptide sequence binding to the human transferrin receptor (hTfr) was engrafted into the D-segment of the hCD81 LEL, resulting in a mutant that still exhibited a compact fold. Grafting of the same peptide sequence between helices A and B resulted in a molecule with an aberrant profile in size exclusion chromatography (SEC), which could be improved by a de novo cysteine bond connecting both helices. Both peptide-grafted proteins showed an enhanced internalization into the cell line SK-BR3, which strongly overexpresses hTfr. In summary, the tetraspan LEL fold could be stabilized to enhance its amenability for engineering into a more versatile protein scaffold.
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spelling pubmed-61609182018-10-01 Stabilization of the CD81 Large Extracellular Loop with De Novo Disulfide Bonds Improves Its Amenability for Peptide Grafting Vogt, Stefan Stadlmayr, Gerhard Stadlbauer, Katharina Sádio, Flávio Andorfer, Peter Grillari, Johannes Rüker, Florian Wozniak-Knopp, Gordana Pharmaceutics Article Tetraspan proteins are significantly enriched in the membranes of exosomal vesicles (EVs) and their extracellular domains are attractive targets for engineering towards specific antigen recognition units. To enhance the tolerance of a tetraspanin fold to modification, we achieved significant thermal stabilization of the human CD81 large extracellular loop (hCD81 LEL) via de novo disulfide bonds. The best mutants were shown to exhibit a positive shift in the melting temperature (T(m)) of up to 25 °C. The combination of two most potent disulfide bonds connecting different strands of the protein resulted in a mutant with a T(m) of 109 °C, 43 °C over the T(m) of the wild-type hCD81 LEL. A peptide sequence binding to the human transferrin receptor (hTfr) was engrafted into the D-segment of the hCD81 LEL, resulting in a mutant that still exhibited a compact fold. Grafting of the same peptide sequence between helices A and B resulted in a molecule with an aberrant profile in size exclusion chromatography (SEC), which could be improved by a de novo cysteine bond connecting both helices. Both peptide-grafted proteins showed an enhanced internalization into the cell line SK-BR3, which strongly overexpresses hTfr. In summary, the tetraspan LEL fold could be stabilized to enhance its amenability for engineering into a more versatile protein scaffold. MDPI 2018-08-27 /pmc/articles/PMC6160918/ /pubmed/30150531 http://dx.doi.org/10.3390/pharmaceutics10030138 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vogt, Stefan
Stadlmayr, Gerhard
Stadlbauer, Katharina
Sádio, Flávio
Andorfer, Peter
Grillari, Johannes
Rüker, Florian
Wozniak-Knopp, Gordana
Stabilization of the CD81 Large Extracellular Loop with De Novo Disulfide Bonds Improves Its Amenability for Peptide Grafting
title Stabilization of the CD81 Large Extracellular Loop with De Novo Disulfide Bonds Improves Its Amenability for Peptide Grafting
title_full Stabilization of the CD81 Large Extracellular Loop with De Novo Disulfide Bonds Improves Its Amenability for Peptide Grafting
title_fullStr Stabilization of the CD81 Large Extracellular Loop with De Novo Disulfide Bonds Improves Its Amenability for Peptide Grafting
title_full_unstemmed Stabilization of the CD81 Large Extracellular Loop with De Novo Disulfide Bonds Improves Its Amenability for Peptide Grafting
title_short Stabilization of the CD81 Large Extracellular Loop with De Novo Disulfide Bonds Improves Its Amenability for Peptide Grafting
title_sort stabilization of the cd81 large extracellular loop with de novo disulfide bonds improves its amenability for peptide grafting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6160918/
https://www.ncbi.nlm.nih.gov/pubmed/30150531
http://dx.doi.org/10.3390/pharmaceutics10030138
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