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A biotechnological tool for glycoprotein desialylation based on immobilized neuraminidase from Clostridium perfringens

BACKGROUND: Sialic acids are widely distributed in nature and have biological relevance owing to their varied structural and functional roles. Immobilized neuraminidase can selectively remove terminal N-acetyl neuraminic acid from glycoproteins without altering the protein backbone while it can be e...

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Autores principales: Bidondo, Lucía, Landeira, Mercedes, Festari, Florencia, Freire, Teresa, Giacomini, Cecilia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7937660/
https://www.ncbi.nlm.nih.gov/pubmed/33732900
http://dx.doi.org/10.1016/j.bbrep.2021.100940
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author Bidondo, Lucía
Landeira, Mercedes
Festari, Florencia
Freire, Teresa
Giacomini, Cecilia
author_facet Bidondo, Lucía
Landeira, Mercedes
Festari, Florencia
Freire, Teresa
Giacomini, Cecilia
author_sort Bidondo, Lucía
collection PubMed
description BACKGROUND: Sialic acids are widely distributed in nature and have biological relevance owing to their varied structural and functional roles. Immobilized neuraminidase can selectively remove terminal N-acetyl neuraminic acid from glycoproteins without altering the protein backbone while it can be easily removed from the reaction mixture avoiding sample contamination. This enables the evaluation of changes in glycoprotein performance upon desialylation. METHODS: Neuraminidase was immobilized onto agarose activated with cyanate ester groups and further used for desialylation of model glycoproteins, a lysate from tumour cells and tumour cells. Desialylation process was analysed by lectin binding assay, determination of sialyl-Tn or flow cytometry. RESULTS: Clostridium perfringens neuraminidase was immobilized with 91 % yield and expressed activity yield was of 41%. It was effective in the desialylation of bovine fetal serum fetuin, bovine lactoferrin and ovine submaxilar mucin. A decrease in sialic-specific SNA lectin recognition of 83% and 53 % was observed for fetuin and lactoferrin with a concomitant increase in galactose specific ECA and PNA lectin recognition. Likewise, a decrease in the recognition of a specific antibody (82%) upon mucin desialylation was observed. Moreover, desialylation of a protein lysate from the sialic acid-rich cell line TA3/Ha was also possible leading to a decrease in 47 % in SNA recognition. Immobilized neuraminidase kept 100% of its initial activity upon five desialylation cycles. CONCLUSIONS: Immobilized neuraminidase is an interesting as well as a robust biotechnological tool for enzymatic desialylation purposes. GENERAL SIGNIFICANCE: Immobilized neuraminidase would contribute to understand the role of sialic acid in biological processes.
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spelling pubmed-79376602021-03-16 A biotechnological tool for glycoprotein desialylation based on immobilized neuraminidase from Clostridium perfringens Bidondo, Lucía Landeira, Mercedes Festari, Florencia Freire, Teresa Giacomini, Cecilia Biochem Biophys Rep Research Article BACKGROUND: Sialic acids are widely distributed in nature and have biological relevance owing to their varied structural and functional roles. Immobilized neuraminidase can selectively remove terminal N-acetyl neuraminic acid from glycoproteins without altering the protein backbone while it can be easily removed from the reaction mixture avoiding sample contamination. This enables the evaluation of changes in glycoprotein performance upon desialylation. METHODS: Neuraminidase was immobilized onto agarose activated with cyanate ester groups and further used for desialylation of model glycoproteins, a lysate from tumour cells and tumour cells. Desialylation process was analysed by lectin binding assay, determination of sialyl-Tn or flow cytometry. RESULTS: Clostridium perfringens neuraminidase was immobilized with 91 % yield and expressed activity yield was of 41%. It was effective in the desialylation of bovine fetal serum fetuin, bovine lactoferrin and ovine submaxilar mucin. A decrease in sialic-specific SNA lectin recognition of 83% and 53 % was observed for fetuin and lactoferrin with a concomitant increase in galactose specific ECA and PNA lectin recognition. Likewise, a decrease in the recognition of a specific antibody (82%) upon mucin desialylation was observed. Moreover, desialylation of a protein lysate from the sialic acid-rich cell line TA3/Ha was also possible leading to a decrease in 47 % in SNA recognition. Immobilized neuraminidase kept 100% of its initial activity upon five desialylation cycles. CONCLUSIONS: Immobilized neuraminidase is an interesting as well as a robust biotechnological tool for enzymatic desialylation purposes. GENERAL SIGNIFICANCE: Immobilized neuraminidase would contribute to understand the role of sialic acid in biological processes. Elsevier 2021-03-02 /pmc/articles/PMC7937660/ /pubmed/33732900 http://dx.doi.org/10.1016/j.bbrep.2021.100940 Text en © 2021 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Bidondo, Lucía
Landeira, Mercedes
Festari, Florencia
Freire, Teresa
Giacomini, Cecilia
A biotechnological tool for glycoprotein desialylation based on immobilized neuraminidase from Clostridium perfringens
title A biotechnological tool for glycoprotein desialylation based on immobilized neuraminidase from Clostridium perfringens
title_full A biotechnological tool for glycoprotein desialylation based on immobilized neuraminidase from Clostridium perfringens
title_fullStr A biotechnological tool for glycoprotein desialylation based on immobilized neuraminidase from Clostridium perfringens
title_full_unstemmed A biotechnological tool for glycoprotein desialylation based on immobilized neuraminidase from Clostridium perfringens
title_short A biotechnological tool for glycoprotein desialylation based on immobilized neuraminidase from Clostridium perfringens
title_sort biotechnological tool for glycoprotein desialylation based on immobilized neuraminidase from clostridium perfringens
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7937660/
https://www.ncbi.nlm.nih.gov/pubmed/33732900
http://dx.doi.org/10.1016/j.bbrep.2021.100940
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