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两性电解质浓度对芯片等电聚焦中蛋白质行为的影响。

Effects of ampholyte concentration on protein behavior in on-chip isoelectric focusing.

作者信息

Shim Jaesool, Dutta Prashanta, Ivory Cornelius F

机构信息

School of Mechanical and Materials Engineering, Washington State University, Pullman, WA, USA.

出版信息

Electrophoresis. 2008 Mar;29(5):1026-35. doi: 10.1002/elps.200700683.

Abstract

The effects of mobility corrections on carrier ampholytes are studied at various ampholyte concentrations to understand protein behavior during IEF. IEF simulations are conducted in the presence of 25 biprotic carrier ampholytes within a pH range of 6-9 after applying the Onsager-Debye-Hückel correction to the carrier ampholytes. Two model proteins with ten charge states but without ionic strength corrections are allowed to focus under an electric field of 300 V/cm in a 1 cm long channel. The IEF simulation results show that higher ionic strengths (50 - 100 mM) cause significant changes in the transient movement as well as the final focused profiles of both ampholytes and proteins. The time required for a single, well-defined peak to form increases with ionic strength when Onsager corrections are applied to the carrier ampholytes. For a particular ampholyte concentration, the space-averaged conductivity does not change during the final focusing stage, but the magnitude of space averaged conductivity is different for different ampholyte concentration. The simulation results also reveal that at steady-state ionic strength profiles remain flat throughout the channel except at the locations of proteins where a significant change in ampholyte concentration is obtained.

摘要

在不同两性电解质浓度下研究迁移率校正对载体两性电解质的影响,以了解等电聚焦过程中蛋白质的行为。在对载体两性电解质应用昂萨格-德拜-休克尔校正后,于pH值6 - 9范围内在25种双质子载体两性电解质存在的情况下进行等电聚焦模拟。允许两种具有十种电荷状态但未进行离子强度校正的模型蛋白在1 cm长的通道中300 V/cm的电场下聚焦。等电聚焦模拟结果表明,较高的离子强度(50 - 100 mM)会导致两性电解质和蛋白质的瞬态运动以及最终聚焦轮廓发生显著变化。当对载体两性电解质应用昂萨格校正时,形成单一、明确峰所需的时间随离子强度增加。对于特定的两性电解质浓度,在最终聚焦阶段空间平均电导率不变,但不同两性电解质浓度下空间平均电导率的大小不同。模拟结果还表明,在稳态下,除了在蛋白质位置处两性电解质浓度有显著变化外,整个通道内的离子强度分布保持平坦。

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