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Effect of Sequestering Intrinsic Iron on the Electron Paramagnetic Resonance Signals in Powdered Soy Proteins

机译:螯合本征铁对粉状大豆蛋白中电子顺磁共振信号的影响

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This investigation examined iron in powdered soy protein products using electron paramagnetic resonance (EPR) spectroscopy, and the effect that selectively binding free iron in isolated soy protein (ISP) had on the occurrence of metastable radicals in powdered soy proteins. EPR analyses of soybean defatted flour, commercial ISP and laboratory ISP samples revealed a peak at g = 4.3 characteristic of high-spin ferric iron in a rhombic-coordinated environment. Commercial ISP samples examined contained higher levels of the rhombic ferric iron than laboratory-prepared ISP samples. During the first 6 wk of storage the primary singlet EPR signal at g = 2.0049 in the commercial ISP samples approximately doubled, and the laboratory prepared samples increased by about 9-fold. The EPR signal was initially about 4-times higher in the freshly prepared commercial samples compared to the corresponding laboratory ISP. Laboratory ISP samples prepared with added deferoxamine to sequester endogenous iron exhibited a large increase in the high-spin ferric iron EPR signal at g = 4.3. ISP treated with deferoxamine also exhibited a multiple-line EPR signal at about g = 2.007, instead of the typical singlet signal at g = 2.0049. The power at which the signal amplitude was half-saturated also changed from about 1 mW in the control ISP to about 20 mW in the deferoxamine treated ISP. The multiple-line EPR spectrum from the ISP treated with deferoxamine increased during storage over a 6-wk period by about 6-fold. The observed changes in EPR line-shape, g-value, and power saturation with the deferoxamine treatment indicate that the primary free-radical signal in powdered ISP samples may be from stabilized tyrosine radicals with spin densities distributed over the aromatic ring.
机译:这项研究使用电子顺磁共振(EPR)光谱检查了大豆蛋白粉产品中的铁,以及选择性结合游离大豆蛋白(ISP)中游离铁对大豆蛋白粉中亚稳态自由基的影响。大豆脱脂面粉,商业ISP和实验室ISP样品的EPR分析显示,在菱形配位环境中,高旋转三价铁的特征峰g = 4.3。检查的商业ISP样品比实验室制备的ISP样品含有更高水平的菱形三价铁。在存储的前6周期间,商业ISP样本中g = 2.0049的原始单线态EPR信号大约增加了一倍,实验室准备的样本增加了约9倍。与相应的实验室ISP相比,新鲜制备的商业样品中的EPR信号最初大约高4倍。用去铁胺添加到螯合内生铁中制备的实验室ISP样品在g = 4.3时高自旋三价铁EPR信号显着增加。用去铁胺治疗的ISP在g = 2.007时也显示出多线EPR信号,而不是g = 2.0049时的典型单线态信号。信号幅度半饱和的功率也从对照ISP的约1 mW变为去铁胺处理的ISP的约20 mW。经过去铁胺处理的ISP的多线EPR光谱在6周内的存储期间增加了约6倍。用去铁胺处理观察到的EPR线形,g值和功率饱和度的变化表明,粉末状ISP样品中的主要自由基信号可能来自稳定的酪氨酸自由基,其自旋密度分布在芳香环上。

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