调控配位不饱和位点增强锆基金属有机框架纳米酶的蛋白水解酶活性及应用
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(1. 长沙理工大学食品与生物工程学院,湖南 长沙 410114;2. 齐鲁工业大学食品科学与工程学院,山东 济南 250353)

作者简介:

许珂宇,女,长沙理工大学在读硕士研究生。

通讯作者:

许宙(1983—),男,长沙理工大学副教授,博士。E-mail:xz_jnu@126.com

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基金项目:

湖南省教育厅研究项目(编号:21B0337);湖南省自然科学基金(编号:2021JJ30701,2022JJ10046);泰山产业领军人才项目(编号:457 LJNY202004)


Nanozymatic activity of Zr-based MOFs: Tuning the coordinatively unsaturated metal sites for enhancing hydrolytic activity toward peptide bonds
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(1. School of Food Science and Bioengineering, Changsha University of Science & Technology, Changsha, Hunan 410114, China; 2. School of Food Science and Engineering, Qilu University of Technology, Jinan, Shandong 250353, China)

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    摘要:

    目的:开发高效稳定的蛋白水解酶纳米酶,研究配位不饱和位点与肽键水解活性的关系。方法:制备3种不同配位(12/6/4配位)不饱和位点的锆基金属有机框架纳米酶(Zr-MOFs纳米酶)调控蛋白水解酶活性。以双甘肽(Gly-Gly)水解率为指标,评估3种Zr-MOFs纳米酶的蛋白水解酶活性。随后,使用性能最优的蛋白水解酶纳米酶水解大豆蛋白、鱼糜蛋白和酪蛋白,利用SDS-聚丙烯酰胺凝胶电泳分离水解产物,通过考马斯亮蓝对分离的条带染色,考察人工蛋白酶对3种蛋白的水解效率。结果:在3种不同配位不饱和位点Zr-MOFs纳米酶中,6-配位Zr-MOF纳米酶的蛋白水解酶活性最高,水解率为52%。与非催化水解相比,水解反应速率提高了2.63×103倍。蛋白水解酶纳米酶可水解食品工业中3种常见的蛋白质,对鱼糜蛋白的水解效率最高。结论:通过调控Zr-MOFs纳米酶的配位不饱和位点可以增强蛋白水解酶活性。

    Abstract:

    Objective: To develop efficient and stable artificial proteases and investigate the relationship between coordinatively unsaturated metal sites and hydrolysis activity of peptide bond. Methods: Three zirconium-based metal-organic frameworks (Zr-MOFs) with different coordinatively unsaturated sites (12-connected Zr-MOF, 6-connected Zr-MOF, and 4-connected Zr-MOF) were prepared to modulate protein hydrolase activity. The protein hydrolase activity of three Zr-MOFs was evaluated by the hydrolysis rate of bis-glycopeptide (Gly-Gly) as an indicator. Subsequently, soy protein, surimi protein and casein were hydrolyzed using the best performing protein hydrolase nanoenzymes, and the hydrolysis products were separated using SDS-polyacrylamide gel electrophoresis, and the hydrolysis efficiency of the three proteins by artificial proteases was investigated by staining the separated bands with Komas Brilliant Blue. Results: Among the three Zr-MOFs proteases, the 6-connected Zr-MOF showed the highest hydrolysis (52%) efficiency toward the Gly-Gly. The hydrolysis reaction rate was increased 2.63×103 times compared the uncatalyzed hydrolysis. In addition, the 6-connected Zr-MOF could respectively hydrolyze three commonly proteins in the food industry and had the highest catalytic effect on surimi protein. Conclusion: These results revealed that the ability of Zr-MOF to hydrolyze peptide bonds could be enhanced by tuning the coordinatively unsaturated sites. The study provided a new idea for the application of artificial proteases in food industry.

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许珂宇,夏利伟,邢克宇,等.调控配位不饱和位点增强锆基金属有机框架纳米酶的蛋白水解酶活性及应用[J].食品与机械,2023,39(9):12-17,25.
XU Keyu, XIA Liwei, XING Keyu, et al. Nanozymatic activity of Zr-based MOFs: Tuning the coordinatively unsaturated metal sites for enhancing hydrolytic activity toward peptide bonds[J]. Food & Machinery,2023,39(9):12-17,25.

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  • 收稿日期:2023-03-29
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  • 在线发布日期: 2023-10-30
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