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氧化作用会影响肌原纤维蛋白的水功能特性吗?

Does oxidation affect the water functionality of myofibrillar proteins?

作者信息

Bertram Hanne Christine, Kristensen Mette, Østdal Henrik, Baron Caroline P, Young Jette F, Andersen Henrik Jørgen

机构信息

Research Center Foulum, Department of Food Science, Faculty of Agricultural Sciences, University of Aarhus, P.O. Box 50, DK-8830 Tjele, Denmark.

出版信息

J Agric Food Chem. 2007 Mar 21;55(6):2342-8. doi: 10.1021/jf0625353. Epub 2007 Feb 23.

Abstract

Water-binding properties of myofibrils extracted from porcine muscle, and added hemoglobin with and without exposure to H2O2, were characterized using low-field proton NMR T2 relaxometry. The effects of pH and ionic strength in the samples were investigated as pH was adjusted to 5.4, 6.2, and 7.0 and ionic strength was adjusted to 0.29, 0.46, and 0.71 M, respectively. The formation of dityrosine as a measure of oxidative protein cross-linking revealed a significant increase in dityrosine concentrations upon H2O2 activation. The formation of dityrosine was strongly pH-dependent and increased with decreasing pH. In addition, increased levels of thiobarbituric acid reactive substances were observed upon addition of H2O2, implying that lipid oxidation was enhanced, however, with a different oxidation pattern as compared to the myofibrillar proteins. Low-field NMR relaxation measurements revealed reduced T2 relaxation times upon H2O2 activation, which corresponds to reduced water-holding capacity upon oxidation. However, a direct relationship between degree of oxidation and T2 relaxation time was not observed with various pH values and ionic strengths, and further studies are needed for a complete understanding of the effect of oxidation on myofibrillar functionality.

摘要

使用低场质子核磁共振T2弛豫测量法对从猪肌肉中提取的肌原纤维以及添加了血红蛋白且分别暴露于过氧化氢和未暴露于过氧化氢的样本的水结合特性进行了表征。分别将样本的pH值调节至5.4、6.2和7.0,离子强度调节至0.29、0.46和0.71 M,研究了pH值和离子强度的影响。作为氧化蛋白交联指标的二酪氨酸的形成表明,过氧化氢激活后二酪氨酸浓度显著增加。二酪氨酸的形成强烈依赖于pH值,并随着pH值降低而增加。此外,添加过氧化氢后观察到硫代巴比妥酸反应性物质水平升高,这意味着脂质氧化增强,然而,与肌原纤维蛋白相比,其氧化模式不同。低场核磁共振弛豫测量显示,过氧化氢激活后T2弛豫时间缩短,这对应于氧化后持水能力降低。然而,在不同的pH值和离子强度下,未观察到氧化程度与T2弛豫时间之间的直接关系,需要进一步研究以全面了解氧化对肌原纤维功能的影响。

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