Shanghai Key Laboratory of Functional Materials Chemistry, East China University of Science and Technology, Shanghai, P. R. China.
Electrophoresis. 2019 Sep;40(18-19):2610-2617. doi: 10.1002/elps.201900148. Epub 2019 Apr 29.
Free-flow isoelectric focusing (FFIEF) has the merits of mild separation conditions, high recovery and resolution, but suffers from the issues of ampholytes interference and high cost due to expensive carrier ampholytes. In this paper, a home-made carrier ampholyte-free FFIEF system was constructed via orientated migration of H and OH provided by electrode solutions. When applying an electric field, a linear pH gradient from pH 4 to 9 (R = 0.994) was automatically formed by the electromigration of protons and hydroxyl ions in the separation chamber. The carrier ampholyte-free FFIEF system not only avoids interference of ampholyte to detection but also guarantees high separation resolution by establishing stable pH gradient. The separation selectivity was conveniently adjusted by controlling operating voltage and optimizing the composition, concentration and flow rate of the carrier buffer. The constructed system was applied to separation of proteins in egg white, followed by MADLI-TOF-MS identification. Three major proteins, ovomucoid, ovalbumin and ovotransferrin, were successfully separated according to their pI values with 15 mmol/L Tris-acetic acid (pH = 6.5) as carrier buffer at a flow rate of 12.9 mL/min.
自由流等电聚焦(FFIEF)具有分离条件温和、回收率和分辨率高的优点,但由于昂贵的载体两性电解质而存在两性电解质干扰和成本高的问题。本文通过电极溶液提供的 H 和 OH 的定向迁移构建了一种自制的无载体两性电解质 FFIEF 系统。施加电场时,质子和羟基离子在分离室中的电迁移自动形成线性 pH 梯度,范围从 4 到 9(R = 0.994)。无载体两性电解质 FFIEF 系统不仅避免了两性电解质对检测的干扰,而且通过建立稳定的 pH 梯度保证了高分离分辨率。通过控制操作电压和优化载体缓冲液的组成、浓度和流速,可以方便地调整分离选择性。所构建的系统用于分离蛋清中的蛋白质,然后通过 MALDI-TOF-MS 鉴定。根据其等电点,使用 15mmol/L 三乙酸(pH=6.5)作为载体缓冲液,在流速为 12.9mL/min 下,成功分离了三种主要蛋白质,卵类黏蛋白、卵清白蛋白和卵转铁蛋白。