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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Influence of one- and two-dimensional gel electrophoresis procedure on metal-protein bindings examined by electrospray ionization mass spectrometry, inductively coupled plasma mass spectrometry, and ultrafiltration
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Influence of one- and two-dimensional gel electrophoresis procedure on metal-protein bindings examined by electrospray ionization mass spectrometry, inductively coupled plasma mass spectrometry, and ultrafiltration

机译:一维和二维凝胶电泳程序对通过电喷雾电离质谱,电感耦合等离子体质谱和超滤检测的金属-蛋白质结合的影响

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Three independent methods, (i) electrospray ionization mass spectrometry (ESI-MS), (ii) carrying out the complete protein preparation procedure required for protein gel electrophoresis (GE) including extraction, precipitation, washing, and desalting with subsequent microwave digestion of the produced protein fractions for metal content quantification, and (iii) ultrafiltration for separating protein-bound and unbound metal fractions, were employed to elucidate the influences of protein sample preparation and GE running conditions on metal-protein bindings. A treatment of the protein solution with acetone instead of trichloroacetic acid or ammonium sulfate for precipitate formation led to a strongly enhanced metal binding capacity. The desalting step of the resolubilized protein sample caused a metal loss between 10 and 35%. The omission of some extraction buffer additives led to a diminished metal binding capacity of protein fractions obtained from the sample preparation procedure for GE, whereas a tenside addition to the protein solution inhibited metal-protein bindings. The binding stoichiometry of Cu and Zn-protein complexes determined by ESI-MS was influenced by the type of the metal salt which was applied to the protein solution. A higher pH value of the sample solution promoted the metal ion complexation by the proteins. Ultrafiltration experiments revealed a higher Cu- and Zn-binding capacity of the model protein lysozyme in both resolubilization buffers for 1D- and 2D-GE compared to the protein extraction buffer. Strongly diminished metal binding capacities of lysozyme were recorded in the running buffer of 1D-GE and in the gel staining solutions.
机译:三种独立的方法,(i)电喷雾电离质谱(ESI-MS),(ii)进行蛋白质凝胶电泳(GE)所需的完整蛋白质制备程序,包括提取,沉淀,洗涤和脱盐以及随后的微波消解。生产的蛋白质级分用于金属含量定量;(iii)超滤用于分离蛋白质结合和未结合的金属级分,用于阐明蛋白质样品制备和GE运行条件对金属-蛋白质结合的影响。用丙酮代替三氯乙酸或硫酸铵处理蛋白质溶液以形成沉淀物导致金属结合能力大大增强。再溶解的蛋白质样品的脱盐步骤导致金属损失在10%到35%之间。省略某些提取缓冲液添加剂会降低从GE样品制备过程中获得的蛋白质级分的金属结合能力,而向蛋白质溶液中添加表面活性剂则会抑制金属-蛋白质结合。通过ESI-MS测定的Cu和Zn-蛋白质复合物的结合化学计量受施加到蛋白质溶液中的金属盐类型的影响。样品溶液的较高pH值促进了蛋白质与金属离子的络合。超滤实验显示,与蛋白质提取缓冲液相比,在用于1D-GE和2D-GE的再溶解缓冲液中,模型蛋白质溶菌酶的Cu-和Zn结合能力更高。在1D-GE的运行缓冲液和凝胶染色溶液中记录到溶菌酶的金属结合能力大大降低。

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