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Sample preparation strategies for one- and two-dimensional gel electrophoretic separation of plant proteins and the influence on arsenic and zinc bindings

机译:一维和二维凝胶电泳分离植物蛋白的样品制备策略及其对砷和锌结合的影响

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A sample preparation method including protein extraction by an aqueous buffer system, precipitation with trichloroacetic acid, washing with acetone, and desalting by dialysis was developed for 2D gel electrophoresis of mature leaves from Tropaeolum majus, a plant species with a high content of glucosinolates. By the optimized method, 1D- and 2D-gels could also be produced from Festuca rubra leaves and Helianthus annuus seeds. A strong influence of the varied protein preparation parameters on arsenic and zinc bindings was observed. Microwave-digestion with subsequent atomic spectroscopy analysis of protein fractions revealed the highest arsenic binding capacity of 76.2 +/- 1.7% for proteins from sunflower seeds spiked with arsenite. After spiking of T. majus extracts with different arsenic species and zinc salts to 100 mu g As or Zn in 10 mL, 9.5 +/- 0.97%, 0.95 +/- 0.39%, 0.24 +/- 0.02%, 0.20 +/- 0.09%, 0.02%, 0.83 +/- 0.02%, 2.21 +/- 1.64%, and 1.45 +/- 0.69% were recovered in the final protein fraction for phenylarsine oxide, arsenite, arsenate, monomethylarsonate, dimethylarsinate, zinc chloride, zinc sulfate, and zinc acetate, respectively. The cultivation of T. majus under arsenic exposure resulted in a highly elevated arsenic-binding capacity of the proteins that was also dependent on the kind of arsenic species in the following order: arsenite (14.9%) > monomethylarsonate (12.4%) > arsenate (10.8%) > dimethylarsinate (0.32%).
机译:开发了一种样品制备方法,包括对高芥子油苷含量高的植物Tropaeolum majus的成熟叶片进行2D凝胶电泳,包括通过水性缓冲液提取蛋白质,用三氯乙酸沉淀,用丙酮洗涤和通过透析脱盐的方法。通过优化的方法,也可以从Festuca rubra叶和向日葵种子生产1D和2D凝胶。观察到各种蛋白质制备参数对砷和锌结合的强烈影响。微波消解以及随后的蛋白质级分的原子光谱分析显示,砷加标的葵花籽中蛋白质的最高砷结合能力为76.2 +/- 1.7%。将具有不同砷种类和锌盐的毛竹提取物掺入10毫升中的100微克砷或锌后,分别为9.5 +/- 0.97%,0.95 +/- 0.39%,0.24 +/- 0.02%,0.20 +/-在最终蛋白质级分中,苯砷氧化物,亚砷酸盐,砷酸盐,一甲基砷酸盐,二甲基砷酸盐,氯化锌,锌的最终蛋白质级分回收了0.09%,0.02%,0.83 +/- 0.02%,2.21 +/- 1.64%和1.45 +/- 0.69%硫酸盐和醋酸锌。暴露于砷下的苹果假单胞菌的培养导致蛋白质的砷结合能力大大提高,这也取决于砷的种类,顺序如下:砷(14.9%)>一甲基ar酸盐(12.4%)>砷酸盐( 10.8%)>砷酸二甲酯(0.32%)。

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