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Novel Biocatalysts Based on Bromelain Immobilized on Functionalized Chitosans and Research on Their Structural Features

Enzyme immobilization on various carriers represents an effective approach to improve their stability, reusability, and even change their catalytic properties. Here, we show the mechanism of interaction of cysteine protease bromelain with the water-soluble derivatives of chitosan—carboxymethylchitos...

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Autores principales: Holyavka, Marina G., Goncharova, Svetlana S., Sorokin, Andrey V., Lavlinskaya, Maria S., Redko, Yulia A., Faizullin, Dzhigangir A., Baidamshina, Diana R., Zuev, Yuriy F., Kondratyev, Maxim S., Kayumov, Airat R., Artyukhov, Valeriy G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9739615/
https://www.ncbi.nlm.nih.gov/pubmed/36501516
http://dx.doi.org/10.3390/polym14235110
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author Holyavka, Marina G.
Goncharova, Svetlana S.
Sorokin, Andrey V.
Lavlinskaya, Maria S.
Redko, Yulia A.
Faizullin, Dzhigangir A.
Baidamshina, Diana R.
Zuev, Yuriy F.
Kondratyev, Maxim S.
Kayumov, Airat R.
Artyukhov, Valeriy G.
author_facet Holyavka, Marina G.
Goncharova, Svetlana S.
Sorokin, Andrey V.
Lavlinskaya, Maria S.
Redko, Yulia A.
Faizullin, Dzhigangir A.
Baidamshina, Diana R.
Zuev, Yuriy F.
Kondratyev, Maxim S.
Kayumov, Airat R.
Artyukhov, Valeriy G.
author_sort Holyavka, Marina G.
collection PubMed
description Enzyme immobilization on various carriers represents an effective approach to improve their stability, reusability, and even change their catalytic properties. Here, we show the mechanism of interaction of cysteine protease bromelain with the water-soluble derivatives of chitosan—carboxymethylchitosan, N-(2-hydroxypropyl)-3-trimethylammonium chitosan, chitosan sulfate, and chitosan acetate—during immobilization and characterize the structural features and catalytic properties of obtained complexes. Chitosan sulfate and carboxymethylchitosan form the highest number of hydrogen bonds with bromelain in comparison with chitosan acetate and N-(2-hydroxypropyl)-3-trimethylammonium chitosan, leading to a higher yield of protein immobilization on chitosan sulfate and carboxymethylchitosan (up to 58 and 65%, respectively). In addition, all derivatives of chitosan studied in this work form hydrogen bonds with His158 located in the active site of bromelain (except N-(2-hydroxypropyl)-3-trimethylammonium chitosan), apparently explaining a significant decrease in the activity of biocatalysts. The N-(2-hydroxypropyl)-3-trimethylammonium chitosan displays only physical interactions with His158, thus possibly modulating the structure of the bromelain active site and leading to the hyperactivation of the enzyme, up to 208% of the total activity and 158% of the specific activity. The FTIR analysis revealed that interaction between N-(2-hydroxypropyl)-3-trimethylammonium chitosan and bromelain did not significantly change the enzyme structure. Perhaps this is due to the slowing down of aggregation and the autolysis processes during the complex formation of bromelain with a carrier, with a minimal modification of enzyme structure and its active site orientation.
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spelling pubmed-97396152022-12-11 Novel Biocatalysts Based on Bromelain Immobilized on Functionalized Chitosans and Research on Their Structural Features Holyavka, Marina G. Goncharova, Svetlana S. Sorokin, Andrey V. Lavlinskaya, Maria S. Redko, Yulia A. Faizullin, Dzhigangir A. Baidamshina, Diana R. Zuev, Yuriy F. Kondratyev, Maxim S. Kayumov, Airat R. Artyukhov, Valeriy G. Polymers (Basel) Article Enzyme immobilization on various carriers represents an effective approach to improve their stability, reusability, and even change their catalytic properties. Here, we show the mechanism of interaction of cysteine protease bromelain with the water-soluble derivatives of chitosan—carboxymethylchitosan, N-(2-hydroxypropyl)-3-trimethylammonium chitosan, chitosan sulfate, and chitosan acetate—during immobilization and characterize the structural features and catalytic properties of obtained complexes. Chitosan sulfate and carboxymethylchitosan form the highest number of hydrogen bonds with bromelain in comparison with chitosan acetate and N-(2-hydroxypropyl)-3-trimethylammonium chitosan, leading to a higher yield of protein immobilization on chitosan sulfate and carboxymethylchitosan (up to 58 and 65%, respectively). In addition, all derivatives of chitosan studied in this work form hydrogen bonds with His158 located in the active site of bromelain (except N-(2-hydroxypropyl)-3-trimethylammonium chitosan), apparently explaining a significant decrease in the activity of biocatalysts. The N-(2-hydroxypropyl)-3-trimethylammonium chitosan displays only physical interactions with His158, thus possibly modulating the structure of the bromelain active site and leading to the hyperactivation of the enzyme, up to 208% of the total activity and 158% of the specific activity. The FTIR analysis revealed that interaction between N-(2-hydroxypropyl)-3-trimethylammonium chitosan and bromelain did not significantly change the enzyme structure. Perhaps this is due to the slowing down of aggregation and the autolysis processes during the complex formation of bromelain with a carrier, with a minimal modification of enzyme structure and its active site orientation. MDPI 2022-11-24 /pmc/articles/PMC9739615/ /pubmed/36501516 http://dx.doi.org/10.3390/polym14235110 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
Holyavka, Marina G.
Goncharova, Svetlana S.
Sorokin, Andrey V.
Lavlinskaya, Maria S.
Redko, Yulia A.
Faizullin, Dzhigangir A.
Baidamshina, Diana R.
Zuev, Yuriy F.
Kondratyev, Maxim S.
Kayumov, Airat R.
Artyukhov, Valeriy G.
Novel Biocatalysts Based on Bromelain Immobilized on Functionalized Chitosans and Research on Their Structural Features
title Novel Biocatalysts Based on Bromelain Immobilized on Functionalized Chitosans and Research on Their Structural Features
title_full Novel Biocatalysts Based on Bromelain Immobilized on Functionalized Chitosans and Research on Their Structural Features
title_fullStr Novel Biocatalysts Based on Bromelain Immobilized on Functionalized Chitosans and Research on Their Structural Features
title_full_unstemmed Novel Biocatalysts Based on Bromelain Immobilized on Functionalized Chitosans and Research on Their Structural Features
title_short Novel Biocatalysts Based on Bromelain Immobilized on Functionalized Chitosans and Research on Their Structural Features
title_sort novel biocatalysts based on bromelain immobilized on functionalized chitosans and research on their structural features
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9739615/
https://www.ncbi.nlm.nih.gov/pubmed/36501516
http://dx.doi.org/10.3390/polym14235110
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