Application of an acid proteinase from Monascus purpureus to reduce antigenicity of bovine milk whey protein.

IF 3.2 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal of Industrial Microbiology & Biotechnology Pub Date : 2011-09-01 Epub Date: 2011-02-05 DOI:10.1007/s10295-010-0933-0
P L Nilantha Lakshman, Shinjiro Tachibana, Hirohide Toyama, Toki Taira, Toshihiko Suganuma, Worapot Suntornsuk, Masaaki Yasuda
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引用次数: 11

Abstract

An acid proteinase from Monascus purpureus No. 3403, MpuAP, was previously purified and some characterized in our laboratory (Agric Biol Chem 48:1637-1639, 1984). However, further information about this enzyme is lacking. In this study, we investigated MpuAP's comprehensive substrate specificity, storage stability, and prospects for reducing antigenicity of whey proteins for application in the food industry. MpuAP hydrolyzed primarily five peptide bonds, Gln(4)-His(5), His(10)-Leu(11), Ala(14)-Leu(15), Gly(23)-Phe(24) and Phe(24)-Phe(25) in the oxidized insulin B-chain. The lyophilized form of the enzyme was well preserved at 30-40°C for 7 days without stabilizers. To investigate the possibility of reducing the antigenicity of the milk whey protein, enzymatic hydrolysates of the whey protein were evaluated by inhibition ELISA. Out of the three main components of whey protein, casein and α-lactalbumin were efficiently degraded by MpuAP. The sequential reaction of MpuAP and trypsin against the whey protein successfully degraded casein, α-lactalbumin and β-lactoglobulin with the highest degree of hydrolysis. As a result, the hydrolysates obtained by using the MpuAP-trypsin combination showed the lowest antigenicity compared with the single application of pepsin, trypsin or pepsin-trypsin combination. Therefore, the overall result suggested that the storage-stable MpuAP and trypsin combination will be a productive approach for making hypoallergic bovine milk whey protein hydrolysates.

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紫红曲霉酸性蛋白酶在降低乳清蛋白抗原性中的应用。
红曲霉3403 (Monascus purpureus No. 3403, MpuAP)的酸性蛋白酶已被纯化并在实验室进行了部分鉴定(农业生物化学48:1637-1639,1984)。然而,关于这种酶的进一步信息是缺乏的。在这项研究中,我们研究了MpuAP的综合底物特异性、储存稳定性以及在降低乳清蛋白抗原性方面的应用前景。MpuAP主要水解氧化胰岛素b链中的Gln(4)-His(5)、His(10)-Leu(11)、Ala(14)-Leu(15)、Gly(23)-Phe(24)和Phe(24)-Phe(25)五个肽键。在没有稳定剂的情况下,酶的冻干形式在30-40°C下保存了7天。为了研究降低乳清蛋白抗原性的可能性,用抑制酶联免疫吸附试验(ELISA)评价了酶解乳清蛋白的抗原性。乳清蛋白的3种主要成分中,酪蛋白和α-乳清蛋白被MpuAP有效降解。MpuAP和胰蛋白酶对乳清蛋白的连续反应成功地降解了酪蛋白、α-乳清蛋白和β-乳球蛋白,水解程度最高。结果表明,与单独应用胃蛋白酶、胰蛋白酶或胃蛋白酶-胰蛋白酶组合相比,MpuAP-trypsin组合获得的水解产物具有最低的抗原性。综上所述,贮藏稳定的MpuAP和胰蛋白酶组合将是制备低过敏性乳清蛋白水解物的有效途径。
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来源期刊
Journal of Industrial Microbiology & Biotechnology
Journal of Industrial Microbiology & Biotechnology 工程技术-生物工程与应用微生物
CiteScore
7.70
自引率
0.00%
发文量
25
审稿时长
3 months
期刊介绍: The Journal of Industrial Microbiology and Biotechnology is an international journal which publishes papers describing original research, short communications, and critical reviews in the fields of biotechnology, fermentation and cell culture, biocatalysis, environmental microbiology, natural products discovery and biosynthesis, marine natural products, metabolic engineering, genomics, bioinformatics, food microbiology, and other areas of applied microbiology
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