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Molecular-Level Profiling of Human Serum Transferrin Protein through Assessment of Nanopore-Based Electrical and Chemical Responsiveness

机译:通过评估基于纳米孔的电气和化学响应性的人血清转移蛋白的分子水平分析

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In this study, we investigated the voltage and pH responsiveness of human serum transferrin (hSTf) protein using silicon nitride (SixNy) nanopores. The Fe(III)-rich holo form of hSTf was dominant when pH > pI, while the Fe(III)-free apo form was dominant when pH < pI. The translocations of hSTf were purely in an electrophoretic sense, thus depended on its pI and the solution pH. With increasing voltage, voltage driven protein unfolding became prominent which was indicated by the trends associated with change in conductance, due to hSTf translocation, and in the excluded electrolyte volume. Additionally, analysis of the translocation events of the pure apo form of hSTf showed a clear difference in the event population compared to that of the holo form. The results obtained demonstrate the successful application of nanopore devices to distinguish between the holo and apo forms of hSTf in a mixture and to analyze its folding and unfolding phenomenon over a range of pH and applied voltages.
机译:在这项研究中,我们研究了使用氮化硅(六卷)纳米孔的人血清转移素(HSTF)蛋白的电压和pH反应性。当pH> Pi时,HSTF的Fe(III)-RICH HOLO形式的HSTF是显性的,而FE(III)-FREE APO形式在pH i时占主导地位。 HSTF的易位纯粹是一种电泳意义,因此依赖于其PI和溶液pH。随着电压的增加,电压驱动的蛋白质展开变得突出,其由于HSTF易位和排除的电解质体积而导致导电的变化相关。另外,与HTO形式相比,HSTF的纯APO形式的易位事件的分析显示了事件群体的明显差异。所获得的结果证明了纳米孔装置的成功应用区分混合物中HSTF的HOLO和APO形式,并在一系列pH和施加的电压下分析其折叠和展开现象。

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