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Geranyl Functionalized Materials for Site-Specific Co-Immobilization of Proteins

Different materials containing carboxylic groups have been functionalized with geranyl-amine molecules by using an EDC/NHS strategy. Chemical modification of the support was confirmed by XRD, UV-spectrophotometer, and FT-IR. This geranyl-functionalized material was successfully applied for four diff...

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Autores principales: Brabcova, Jana, Andreu, Alicia, Aguilera, David, Cabrera, Zaida, de las Rivas, Blanca, Muñoz, Rosario, Palomo, Jose M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8161341/
https://www.ncbi.nlm.nih.gov/pubmed/34069529
http://dx.doi.org/10.3390/molecules26103028
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author Brabcova, Jana
Andreu, Alicia
Aguilera, David
Cabrera, Zaida
de las Rivas, Blanca
Muñoz, Rosario
Palomo, Jose M.
author_facet Brabcova, Jana
Andreu, Alicia
Aguilera, David
Cabrera, Zaida
de las Rivas, Blanca
Muñoz, Rosario
Palomo, Jose M.
author_sort Brabcova, Jana
collection PubMed
description Different materials containing carboxylic groups have been functionalized with geranyl-amine molecules by using an EDC/NHS strategy. Chemical modification of the support was confirmed by XRD, UV-spectrophotometer, and FT-IR. This geranyl-functionalized material was successfully applied for four different strategies of site-selective immobilization of proteins at room temperature and aqueous media. A reversible hydrophobic immobilization of proteins (lipases, phosphoglucosidases, or tyrosinase) was performed in neutral pH in yields from 40 to >99%. An increase of the activity in the case of lipases was observed from a range of 2 to 4 times with respect to the initial activity in solution. When chemically or genetically functionalized cysteine enzymes were used, the covalent immobilization, via a selective thiol-alkene reaction, was observed in the presence of geranyl support at pH 8 in lipases in the presence of detergent (to avoid the previous hydrophobic interactions). Covalent attachment was confirmed with no release of protein after immobilization by incubation with hydrophobic molecules. In the case of a selenium-containing enzyme produced by the selenomethionine pathway, the selective immobilization was successfully yielded at acidic pH (pH 5) (89%) much better than at pH 8. In addition, when an azido-enzyme was produced by the azide–homoalanine pathway, the selective immobilization was successful at pH 6 and in the presence of CuI for the click chemistry reaction.
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spelling pubmed-81613412021-05-29 Geranyl Functionalized Materials for Site-Specific Co-Immobilization of Proteins Brabcova, Jana Andreu, Alicia Aguilera, David Cabrera, Zaida de las Rivas, Blanca Muñoz, Rosario Palomo, Jose M. Molecules Article Different materials containing carboxylic groups have been functionalized with geranyl-amine molecules by using an EDC/NHS strategy. Chemical modification of the support was confirmed by XRD, UV-spectrophotometer, and FT-IR. This geranyl-functionalized material was successfully applied for four different strategies of site-selective immobilization of proteins at room temperature and aqueous media. A reversible hydrophobic immobilization of proteins (lipases, phosphoglucosidases, or tyrosinase) was performed in neutral pH in yields from 40 to >99%. An increase of the activity in the case of lipases was observed from a range of 2 to 4 times with respect to the initial activity in solution. When chemically or genetically functionalized cysteine enzymes were used, the covalent immobilization, via a selective thiol-alkene reaction, was observed in the presence of geranyl support at pH 8 in lipases in the presence of detergent (to avoid the previous hydrophobic interactions). Covalent attachment was confirmed with no release of protein after immobilization by incubation with hydrophobic molecules. In the case of a selenium-containing enzyme produced by the selenomethionine pathway, the selective immobilization was successfully yielded at acidic pH (pH 5) (89%) much better than at pH 8. In addition, when an azido-enzyme was produced by the azide–homoalanine pathway, the selective immobilization was successful at pH 6 and in the presence of CuI for the click chemistry reaction. MDPI 2021-05-19 /pmc/articles/PMC8161341/ /pubmed/34069529 http://dx.doi.org/10.3390/molecules26103028 Text en © 2021 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
Brabcova, Jana
Andreu, Alicia
Aguilera, David
Cabrera, Zaida
de las Rivas, Blanca
Muñoz, Rosario
Palomo, Jose M.
Geranyl Functionalized Materials for Site-Specific Co-Immobilization of Proteins
title Geranyl Functionalized Materials for Site-Specific Co-Immobilization of Proteins
title_full Geranyl Functionalized Materials for Site-Specific Co-Immobilization of Proteins
title_fullStr Geranyl Functionalized Materials for Site-Specific Co-Immobilization of Proteins
title_full_unstemmed Geranyl Functionalized Materials for Site-Specific Co-Immobilization of Proteins
title_short Geranyl Functionalized Materials for Site-Specific Co-Immobilization of Proteins
title_sort geranyl functionalized materials for site-specific co-immobilization of proteins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8161341/
https://www.ncbi.nlm.nih.gov/pubmed/34069529
http://dx.doi.org/10.3390/molecules26103028
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