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Native Protein Separation by Isoelectric Focusing and Blue Gel Electrophoresis?Coupled Two?Dimensional Microfluidic Chip Electrophoresis

机译:等电聚焦和蓝色凝胶电泳-二维二维微流控芯片电泳分离天然蛋白质

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The use of microfluidic chip-based two-dimensional separation holds great promise in the proteomics field, given its portability, simplicity, speed, efficiency, and throughput. However, inclusion of sodium dodecyl sulfate, reported to be necessary for increasing proteinresolving capability, was also accompanied by the loss of both protein conformation and biological function. Here, we describe separation of native proteins by introducing blue native gel electrophoresis into isoelectric focusing and gel electrophoresis (IEF/CGE)-coupled protein two-dimensional microfluidic chip electrophoresis. After assessing the influence of various experimental conditions, the best separation ability and reproducibility of blue native IEF/CGE (IEF/BN-CGE) chip electrophoresis achieved until now were demonstrated no matter whether with a simple simulated mixture or with a complex mixture of total Escherichia coli proteins. Finally, instead of theoretical calculations, the image analysis technique was also used for the first time to quantitatively evaluate the actual peak capacities of chip electrophoresis. According to the number of features abstracted in the electrophoresis patterns, the superiority of the IEF/BN-CGE two-dimensional microfluidic chip electrophoresis was then exhibited quantitatively. The high native protein separation performance makes this established chip electrophoresis method possible for further application in widely needed drug screening, analysis of bio-molecular function, and assays of protein–protein interactions.
机译:鉴于其便携性,简单性,速度,效率和通量,基于微流体芯片的二维分离在蛋白质组学领域具有广阔的前景。但是,据报道对于增加蛋白质分辨能力而言,十二烷基硫酸钠的加入也伴随着蛋白质构象和生物学功能的丧失。在这里,我们描述了通过将蓝色天然凝胶电泳引入等电聚焦和凝胶电泳(IEF / CGE)耦合蛋白质二维微流控芯片电泳来分离天然蛋白质。在评估了各种实验条件的影响后,无论是简单的模拟混合物还是复杂的总混合物,都证明了迄今为止获得的蓝色天然IEF / CGE(IEF / BN-CGE)芯片电泳的最佳分离能力和重现性大肠杆菌蛋白。最后,代替理论计算,图像分析技术也首次用于定量评估芯片电泳的实际峰容量。根据电泳图谱中提取的特征数目,定量分析了IEF / BN-CGE二维微流控芯片电泳法的优越性。天然蛋白质的高分离性能使这种成熟的芯片电泳方法有可能进一步应用于广泛需要的药物筛选,生物分子功能分析以及蛋白质与蛋白质相互作用的测定。

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