Multiple peptide fraction collection by capillary electrophoresis with reinjection analysis.

Peptide research Pub Date : 1996-07-01
H J Boss, M F Rohde, R S Rush
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引用次数: 0

Abstract

This papers addresses many of the optimization parameters necessary to convert from high resolution capillary electrophoresis (CE) analytical separation parameters to automated, micropreparative multiple fraction collection using software-controlled, interrupted applied voltage. Optimization of two parameters are crucial: 1) preparative sample loading and 2) the determination of peak collection windows. Factors affecting sample loading volume are discussed, such as capillary inner diameters, sample temperatures and sample injection times. Peak collection windows have been determined experimentally and offer an advantage to windows calculated using a linear mobility relationship, especially for long run times, high current levels, and multiple voltage ramping required for multiple fraction collection. Reinjection analysis of both non-glycopeptides and glycopeptides are examined, and clearly indicate peak mobility can be employed for identifying the collected peptides. Difficulties associated with quantitation of the collected peaks by CE are described and appear to be predominantly associated with sample matrix effects.

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用毛细管电泳法收集多肽片段并进行回注分析。
本文讨论了从高分辨率毛细管电泳(CE)分析分离参数转换为使用软件控制的中断施加电压的自动化微制备多组分收集所需的许多优化参数。两个参数的优化是至关重要的:1)制备样品的加载和2)峰收集窗口的确定。讨论了毛细管内径、样品温度和样品进样次数等因素对样品上样量的影响。峰值收集窗口已经通过实验确定,并为使用线性迁移关系计算的窗口提供了优势,特别是对于长运行时间,高电流水平和多个分数收集所需的多次电压斜坡。对非糖肽类和糖肽类进行了回注射分析,并明确指出可以利用峰迁移率来识别收集的肽。描述了用CE对所收集的峰进行定量的困难,这些困难似乎主要与样品基质效应有关。
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