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多频超声辅助纤维素酶从桑叶中提取蛋白质:动力学、热力学和结构特性。

Multi-frequency ultrasound-assisted cellulase extraction of protein from mulberry leaf: Kinetic, thermodynamic, and structural properties.

机构信息

School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang 212100, China.

School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang 212100, China.

出版信息

Ultrason Sonochem. 2023 Oct;99:106554. doi: 10.1016/j.ultsonch.2023.106554. Epub 2023 Aug 7.

Abstract

The effects of different extraction methods (traditional extraction, ultrasound extraction, cellulase extraction, and ultrasound-assisted cellulase extraction) on the yield of mulberry leaf protein (MLP) were investigated, and the results revealed that multi-frequency ultrasound-assisted cellulase extraction was the most efficient extraction method. The mechanism of the synergistic extraction method used to efficiently extract protein from mulberry leave was investigated, focusing on the kinetics and thermodynamics of the enzymatic process. The results revealed that kinetic parameters K decreased by 14.07% and k increased by 5.02%, and the thermodynamic parameters E, ΔH, and ΔS decreased by 44.81%, 48.41%, and 21.12 %, respectively, following the process of multi-frequency ultrasound (MFU) pretreatment. The spectral analysis with fluorescence spectra manifested that ultrasound exposed hydrophobic groups and induced molecular unfolding of MLP. Atomic force microscope showed that ultrasound decreased particle size while increasing flexibility of MLP. The effect of ultrasound increases the binding frequency of cellulase and substrates, resulting in greater affinity between the two and promoting the solubilization of MLP. This study provides a theoretical basis to improve the application prospects of MLP.

摘要

研究了不同提取方法(传统提取、超声提取、纤维素酶提取和超声辅助纤维素酶提取)对桑叶蛋白(MLP)产率的影响,结果表明多频超声辅助纤维素酶提取是最有效的提取方法。研究了协同提取方法从桑叶中高效提取蛋白质的机制,重点研究了酶促过程的动力学和热力学。结果表明,动力学参数 K 降低了 14.07%,k 增加了 5.02%,热力学参数 E、ΔH 和 ΔS 分别降低了 44.81%、48.41%和 21.12%,多频超声(MFU)预处理后。荧光光谱的光谱分析表明,超声暴露了疏水性基团并诱导了 MLP 的分子展开。原子力显微镜显示,超声减小了颗粒尺寸,同时增加了 MLP 的柔韧性。超声的作用增加了纤维素酶和底物的结合频率,导致两者之间更大的亲和力,促进了 MLP 的溶解。这项研究为提高 MLP 的应用前景提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a87/10432955/ce8ecb67709f/gr1.jpg

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