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Further Stabilization of Alcalase Immobilized on Glyoxyl Supports: Amination Plus Modification with Glutaraldehyde

Alcalase was immobilized on glyoxyl 4% CL agarose beads. This permitted to have Alcalase preparations with 50% activity retention versus Boc-l-alanine 4-nitrophenyl ester. However, the recovered activity versus casein was under 20% at 50 °C, as it may be expected from the most likely area of the pro...

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Autores principales: Hussain, Fouzia, Arana-Peña, Sara, Morellon-Sterling, Roberto, Barbosa, Oveimar, Ait Braham, Sabrina, Kamal, Shagufta, Fernandez-Lafuente, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6320783/
https://www.ncbi.nlm.nih.gov/pubmed/30513981
http://dx.doi.org/10.3390/molecules23123188
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author Hussain, Fouzia
Arana-Peña, Sara
Morellon-Sterling, Roberto
Barbosa, Oveimar
Ait Braham, Sabrina
Kamal, Shagufta
Fernandez-Lafuente, Roberto
author_facet Hussain, Fouzia
Arana-Peña, Sara
Morellon-Sterling, Roberto
Barbosa, Oveimar
Ait Braham, Sabrina
Kamal, Shagufta
Fernandez-Lafuente, Roberto
author_sort Hussain, Fouzia
collection PubMed
description Alcalase was immobilized on glyoxyl 4% CL agarose beads. This permitted to have Alcalase preparations with 50% activity retention versus Boc-l-alanine 4-nitrophenyl ester. However, the recovered activity versus casein was under 20% at 50 °C, as it may be expected from the most likely area of the protein involved in the immobilization. The situation was different at 60 °C, where the activities of immobilized and free enzyme became similar. The chemical amination of the immobilized enzyme or the treatment of the enzyme with glutaraldehyde did not produce any significant stabilization (a factor of 2) with high costs in terms of activity. However, the modification with glutaraldehyde of the previously aminated enzyme permitted to give a jump in Alcalase stability (e.g., with most than 80% of enzyme activity retention for the modified enzyme and less than 30% for the just immobilized enzyme in stress inactivation at pH 7 or 9). This preparation could be used in the hydrolysis of casein at pH 9 even at 67 °C, retaining around 50% of the activity after 5 hydrolytic cycles when the just immobilized preparation was almost inactive after 3 cycles. The modified enzyme can be reused in hydrolysis of casein at 45 °C and pH 9 for 6 cycles (6 h) without any decrease in enzyme activity.
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spelling pubmed-63207832019-01-14 Further Stabilization of Alcalase Immobilized on Glyoxyl Supports: Amination Plus Modification with Glutaraldehyde Hussain, Fouzia Arana-Peña, Sara Morellon-Sterling, Roberto Barbosa, Oveimar Ait Braham, Sabrina Kamal, Shagufta Fernandez-Lafuente, Roberto Molecules Article Alcalase was immobilized on glyoxyl 4% CL agarose beads. This permitted to have Alcalase preparations with 50% activity retention versus Boc-l-alanine 4-nitrophenyl ester. However, the recovered activity versus casein was under 20% at 50 °C, as it may be expected from the most likely area of the protein involved in the immobilization. The situation was different at 60 °C, where the activities of immobilized and free enzyme became similar. The chemical amination of the immobilized enzyme or the treatment of the enzyme with glutaraldehyde did not produce any significant stabilization (a factor of 2) with high costs in terms of activity. However, the modification with glutaraldehyde of the previously aminated enzyme permitted to give a jump in Alcalase stability (e.g., with most than 80% of enzyme activity retention for the modified enzyme and less than 30% for the just immobilized enzyme in stress inactivation at pH 7 or 9). This preparation could be used in the hydrolysis of casein at pH 9 even at 67 °C, retaining around 50% of the activity after 5 hydrolytic cycles when the just immobilized preparation was almost inactive after 3 cycles. The modified enzyme can be reused in hydrolysis of casein at 45 °C and pH 9 for 6 cycles (6 h) without any decrease in enzyme activity. MDPI 2018-12-03 /pmc/articles/PMC6320783/ /pubmed/30513981 http://dx.doi.org/10.3390/molecules23123188 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
Hussain, Fouzia
Arana-Peña, Sara
Morellon-Sterling, Roberto
Barbosa, Oveimar
Ait Braham, Sabrina
Kamal, Shagufta
Fernandez-Lafuente, Roberto
Further Stabilization of Alcalase Immobilized on Glyoxyl Supports: Amination Plus Modification with Glutaraldehyde
title Further Stabilization of Alcalase Immobilized on Glyoxyl Supports: Amination Plus Modification with Glutaraldehyde
title_full Further Stabilization of Alcalase Immobilized on Glyoxyl Supports: Amination Plus Modification with Glutaraldehyde
title_fullStr Further Stabilization of Alcalase Immobilized on Glyoxyl Supports: Amination Plus Modification with Glutaraldehyde
title_full_unstemmed Further Stabilization of Alcalase Immobilized on Glyoxyl Supports: Amination Plus Modification with Glutaraldehyde
title_short Further Stabilization of Alcalase Immobilized on Glyoxyl Supports: Amination Plus Modification with Glutaraldehyde
title_sort further stabilization of alcalase immobilized on glyoxyl supports: amination plus modification with glutaraldehyde
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6320783/
https://www.ncbi.nlm.nih.gov/pubmed/30513981
http://dx.doi.org/10.3390/molecules23123188
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