Effects of hydroxyl radical oxidation on biochemical properties and conformation of myofibrillar protein in pampus argenteus

被引:0
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作者
机构
[1] Chen, Xiaxia
[2] Yang, Wenge
[3] Lü, Liangyu
[4] Hu, Xiaochao
[5] Gao, Xile
来源
Yang, Wenge (yangwenge@nbu.edu.cn) | 1600年 / Chinese Chamber of Commerce卷 / 37期
关键词
Biochemical characteristics - Biochemical properties - Hydroxyl radical oxidations - Hydroxyl radicals - Oxidant concentrations - Pampus argenteus - Protein oxidation - Surface hydrophobicity;
D O I
10.7506/spkx1002-6630-201623021
中图分类号
学科分类号
摘要
This study explored the impact of different oxidant concentrations and oxidation times on biochemical characteristics and spatial structure of myofibrillar protein in back muscles of Pampus argenteus using FeCl3-VC-H2O2 hydroxyl radical-generating systems. The results showed that Pampus argenteus myofibrillar proteins were attacked by free radicals generated from FeCl3-VC-H2O2 systems, causing changes in some amino acid side chains to produce polymers. With the extension of oxidation time, both the high (1.0 mmol/L H2O2) and low concentration (0.1 mmol/L H2O2) oxidant groups showed a significant increase in myofibrillar protein carbonyl content, surface hydrophobicity and dityrosine content, and a decrease in total sulfhydryl content, but the effect of the high oxidant concentration was more significant. Raman spectroscopic analysis indicated that, with the increase in oxidation time and oxidant concentration, the microenvironmental polarity of myofibrillar protein was generally enhanced. The amide I band was shifted to longer wavelength along with a reduction in α-helix content and an increase in β-sheet content. In conclusion, P. argenteus myofibrillar protein could be oxidized in hydroxyl radical-generating systems, leading to its structural and biochemical changes. © 2016, China Food Publishing Company. All right reserved.
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