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制备性流变性等电聚焦电泳,无需载体两性电解质,用于分离复杂的生物样品。

Preparative divergent flow IEF without carrier ampholytes for separation of complex biological samples.

机构信息

Institute of Analytical Chemistry of the ASCR, Brno, Czech Republic.

出版信息

Electrophoresis. 2010 Jan;31(3):433-9. doi: 10.1002/elps.200900484.

Abstract

Efficient separation method is a crucial part of the process in which components of highly complex biological sample are identified and characterized. Based on the principles of recently newly established electrophoretic method called divergent flow IEF (DF IEF), we have tested the DF IEF instrument which is able to operate without the use of background carrier ampholytes. We have verified that during separation and focusing of sample consisting of high numbers of proteins (yeast lysate and wheat flour extract), the pH gradient of preparative DF IEF can be created by autofocusing of the sample components themselves without any addition of carrier ampholytes. In DF IEF, the proteins are separated, desalted and concentrated in one step. The fractions of yeast lysate sample, collected at the DF IEF output and subjected to gel IEF, contained the zones of proteins gradually covering the pI values from 3.7 to 8.5. In our experimental arrangement, the highest number of proteins has been found in fractions with pI values around 5.3 as detected by polyacrylamide gel IEF with CBB staining. During DF IEF, the selected protein bands have been concentrated up to 16.8-fold.

摘要

高效的分离方法是识别和表征高度复杂生物样本成分的过程中的关键部分。基于最近新建立的称为发散流等电聚焦(DF IEF)的电泳方法原理,我们对能够在不使用背景载体两性电解质的情况下运行的 DF IEF 仪器进行了测试。我们已经验证,在分离和聚焦由大量蛋白质组成的样品(酵母裂解物和小麦粉提取物)时,可以通过样品成分自身的自动聚焦来创建制备型 DF IEF 的 pH 梯度,而无需添加载体两性电解质。在 DF IEF 中,蛋白质在一步中进行分离、脱盐和浓缩。在 DF IEF 输出端收集的酵母裂解物样品的馏分,并进行凝胶 IEF,包含逐渐覆盖从 3.7 到 8.5 的等电点值的蛋白质区带。在我们的实验装置中,通过 CBB 染色的聚丙烯酰胺凝胶 IEF 检测到,在 pI 值约为 5.3 的馏分中发现了最多数量的蛋白质。在 DF IEF 过程中,所选的蛋白质条带浓缩了 16.8 倍。

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