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κ-酪蛋白作为由……产生的短链生物活性肽的来源。

κ-Casein as a source of short-chain bioactive peptides generated by .

作者信息

Skrzypczak Katarzyna, Gustaw Waldemar, Szwajgier Dominik, Fornal Emilia, Waśko Adam

机构信息

Department of Fruits, Vegetables and Mushrooms Technology, Faculty of Food Science and Biotechnology, University of Life Sciences in Lublin, Skromna 8, 20-704 Lublin, Poland.

Department of Biotechnology, Human Nutrition and Food Commodity Science, Faculty of Food Science and Biotechnology, University of Life Sciences in Lublin, Skromna 8, 20-704 Lublin, Poland.

出版信息

J Food Sci Technol. 2017 Oct;54(11):3679-3688. doi: 10.1007/s13197-017-2830-2. Epub 2017 Sep 12.

Abstract

This paper explores the ability of strains to release sequences of short biologically active peptides (containing 2-10 amino acid residues) from casein. The proteolytic enzymes of the tested strains exhibit different patterns of cleavage of CN fractions. The modification of κ-casein (κ-CN) with pyrrolidone carboxylic acid inhibits the proteolytic activity of strains 141 and the reference strain (DSMZ 20075), while the modification with phosphothreonine inhibits enzymes of all the tested bacteria. The peptide sequencing analysis indicated that the examined strains produced functional peptides very efficiently. κ-CN proved to be the main source of short peptides released by bacterial enzymes, and the hydrolysis of κ-CN yielded eighty-two bioactive peptides. The hydrolysis of α-casein, α-casein, and β-casein yielded six, two, and one short-chain bioactive peptides, respectively. The isolated bioactive peptides exhibited antioxidative, opioid, stimulating, hypotensive, immunomodulating, antibacterial, and antithrombotic activities. A vast majority of the isolated bioactive peptides caused inhibition of the angiotensin-converting enzyme and dipeptidyl peptidase IV. The role of hydrolysis products as neuropeptides is also pointed out. The highest number of cleavage sites in κ-casein and functional activities of short-chain peptides were obtained in hydrolyzates produced by strain T105.

摘要

本文探究了菌株从酪蛋白中释放短生物活性肽序列(含2 - 10个氨基酸残基)的能力。受试菌株的蛋白水解酶对酪蛋白组分表现出不同的裂解模式。用吡咯烷酮羧酸修饰κ-酪蛋白(κ-CN)会抑制菌株141和参考菌株(DSMZ 20075)的蛋白水解活性,而用磷酸苏氨酸修饰则会抑制所有受试细菌的酶活性。肽测序分析表明,受试菌株能非常高效地产生功能性肽。κ-CN被证明是细菌酶释放短肽的主要来源,κ-CN的水解产生了82种生物活性肽。α-酪蛋白、α-酪蛋白和β-酪蛋白的水解分别产生了6种、2种和1种短链生物活性肽。分离出的生物活性肽具有抗氧化、阿片样、刺激、降压、免疫调节、抗菌和抗血栓形成活性。绝大多数分离出的生物活性肽会抑制血管紧张素转换酶和二肽基肽酶IV。还指出了水解产物作为神经肽的作用。在菌株T105产生的水解产物中,κ-酪蛋白的裂解位点数量最多,短链肽的功能活性也最高。

相似文献

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κ-Casein as a source of short-chain bioactive peptides generated by .κ-酪蛋白作为由……产生的短链生物活性肽的来源。
J Food Sci Technol. 2017 Oct;54(11):3679-3688. doi: 10.1007/s13197-017-2830-2. Epub 2017 Sep 12.

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