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Concentration effects of hydroxyl radical oxidizing systems on biochemical properties of porcine muscle myofibrillar protein

机译:羟自由基氧化体系对猪肌肉肌原纤维蛋白生化特性的影响

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The objective of the study was to determine the dose-dependency of myofibrillar protein oxidation on oxidizing ferric ion. Pork myofibrillar protein isolates (MPI) were suspended in 15 mM piperazine-N,N bis(2-ethane sulfonic acid) (PIPES) buffer (pH 6.0) with 0.6 M NaCl, and incubated at 4℃ for 24 h with two levels of ferric ion (0.01 and 0.1 mM FeCl_3) at eight concentrations of hydrogen peroxide (0.00-10 mM H_2O_2). In both high and low [FeCl_3] oxidizing systems, the Ca-ATPase activity steadily increased with the H_2O_2 concentration. On the other hand, K-ATPase activity, protein carbonyl content, and 2-thiobarbituric acid-reactive substances increased with H_2O_2 up to 1.0 mM, and then gradually declined. Protein unfolding and loss of myosin heavy chain occurred continuously with increasing H_2O_2 concentrations. All changes, except for K-ATPase activity, were generally more rapid and extensive in the high [FeCl_3] oxidizing system. Overall, the biochemical changes in MPI exposed to ferric iron-oxidizing systems were more pronounced at high [FeCl_3] than at low [FeCl_3], but the pattern of the biochemical alterations appeared to be independent of the FeCl_3 concentration.
机译:该研究的目的是确定肌原纤维蛋白氧化对氧化铁离子的剂量依赖性。将猪肉肌原纤维蛋白分离物(MPI)悬浮在含有0.6 M NaCl的15 mM哌嗪-N,N双(2-乙烷磺酸)(PIPES)缓冲液(pH 6.0)中,并在4℃下用两种八种浓度的过氧化氢(0.00-10 mM H_2O_2)中的三价铁离子(0.01和0.1 mM FeCl_3)。在高和低[FeCl_3]氧化系统中,Ca-ATPase活性均随H_2O_2浓度的增加而稳定增加。另一方面,当H_2O_2达到1.0 mM时,K-ATPase活性,蛋白质羰基含量和2-硫代巴比妥酸反应性物质增加,然后逐渐下降。随着H_2O_2浓度的增加,蛋白质的解折叠和肌球蛋白重链的丢失不断发生。在高[FeCl_3]氧化系统中,除K-ATPase活性外,所有变化通常更快,更广泛。总体而言,暴露于三氧化二铁的MPI的生化变化在高[FeCl_3]时比在低[FeCl_3]下更为明显,但生化变化的模式似乎与FeCl_3浓度无关。

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