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Article

Lysozyme Modification Using Proteolytic Enzymes

by
Łukasz Tomczyk
*,
Grzegorz Leśnierowski
and
Renata Cegielska-Radziejewska
Department of Food Quality and Safety Management, Poznan University of Life Sciences, 60-624 Poznan, Poland
*
Author to whom correspondence should be addressed.
Molecules 2023, 28(17), 6260; https://doi.org/10.3390/molecules28176260
Submission received: 16 July 2023 / Revised: 22 August 2023 / Accepted: 23 August 2023 / Published: 26 August 2023
(This article belongs to the Special Issue Recent Advances in Lysozyme)

Abstract

The lysozyme in the chicken egg white consists of various bioactive amino acids. However, these compounds are inactive when they are in the sequence of parent proteins. They become active only when isolated from these proteins. The aim of this study was to modify lysozyme with proteolytic enzymes under specific conditions of the reaction environment so as to obtain active biopeptides. The physicochemical properties of the resulting preparations were also assessed. Our study showed that the modification of lysozyme with hydrolytic enzymes (pepsin and trypsin) under strictly specified conditions resulted in obtaining biopeptide preparations with new and valuable properties, as compared with native lysozyme. After the enzymatic modification of lysozyme, two structural fractions were distinguished in the composition of the resulting preparations—the monomeric fraction and the peptide fraction. The modified lysozyme exhibited high surface hydrophobicity and high total antibacterial activity despite the decrease in the hydrolytic activity. Modification of lysozyme with hydrolytic enzymes, especially pepsin, resulted in preparations with very good antioxidative properties.
Keywords: lysozyme; bioactive peptides; enzymatic hydrolysis; hydrolytic activity; antimicrobial activity; hydrophobic activity; antioxidant activity lysozyme; bioactive peptides; enzymatic hydrolysis; hydrolytic activity; antimicrobial activity; hydrophobic activity; antioxidant activity

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MDPI and ACS Style

Tomczyk, Ł.; Leśnierowski, G.; Cegielska-Radziejewska, R. Lysozyme Modification Using Proteolytic Enzymes. Molecules 2023, 28, 6260. https://doi.org/10.3390/molecules28176260

AMA Style

Tomczyk Ł, Leśnierowski G, Cegielska-Radziejewska R. Lysozyme Modification Using Proteolytic Enzymes. Molecules. 2023; 28(17):6260. https://doi.org/10.3390/molecules28176260

Chicago/Turabian Style

Tomczyk, Łukasz, Grzegorz Leśnierowski, and Renata Cegielska-Radziejewska. 2023. "Lysozyme Modification Using Proteolytic Enzymes" Molecules 28, no. 17: 6260. https://doi.org/10.3390/molecules28176260

APA Style

Tomczyk, Ł., Leśnierowski, G., & Cegielska-Radziejewska, R. (2023). Lysozyme Modification Using Proteolytic Enzymes. Molecules, 28(17), 6260. https://doi.org/10.3390/molecules28176260

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