Key Lab of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
J Chromatogr A. 2012 Mar 9;1228:242-9. doi: 10.1016/j.chroma.2011.06.042. Epub 2011 Jun 17.
Selection of a first-dimensional separation method is very important in proteomic studies performed with two-dimensional liquid chromatography (2D-LC), since reversed-phase chromatography (RPLC) is usually chosen as the second-dimensional separation method in most studies. In this paper, we assess the potential use of mixed-mode reversed-phase/weak cation-exchange (RP/WCX) chromatography in 2D-LC proteomic studies. First, a new RP/WCX mixed-mode stationary phase (named C18WCX) was synthesized based on the polar-copolymerized approach, and a C18WCX column with separation efficiency comparative to conventional C18 columns was developed. This new mixed-mode column primarily provides hydrophobic interactions under acidic condition, but can offer hydrophobic and cation-exchange interactions under neutral and weak basic conditions. An off-line 2D-RP/WCX-RPLC system was established using the C18WCX column with a mobile phase of pH 6.5 in the first dimension and a C18 column with a mobile phase of pH 3.0 in the second dimension. The orthogonality of this two-dimensional system, evaluated through the separation of 123 tryptic peptides, was shown to be higher than that of the conventional 2D-RP-RPLC approach. Applying this 2D-LC method to rat brain samples, we identified 1031 proteins and 4397 unique peptides. In addition, this new two-dimensional method improved the identification of basic peptides. Therefore, we propose that this novel 2D-RP/WCX-RPLC system can be used as an alternative approach for the two-dimensional separation of peptides.
在二维液相色谱(2D-LC)进行的蛋白质组学研究中,选择一维分离方法非常重要,因为在大多数研究中,反相色谱(RPLC)通常被选为二维分离方法。在本文中,我们评估了混合模式反相/弱阳离子交换(RP/WCX)色谱在 2D-LC 蛋白质组学研究中的潜在用途。首先,我们基于极性共聚方法合成了一种新型的 RP/WCX 混合模式固定相(命名为 C18WCX),并开发了一种与传统 C18 柱分离效率相当的 C18WCX 柱。这种新型混合模式柱在酸性条件下主要提供疏水相互作用,但在中性和弱碱性条件下可以提供疏水和阳离子交换相互作用。使用 C18WCX 柱作为第一维的 pH 6.5 流动相和 C18 柱作为第二维的 pH 3.0 流动相,建立了离线 2D-RP/WCX-RPLC 系统。通过对 123 个胰蛋白酶肽的分离评估,该二维系统的正交性高于传统的 2D-RP-RPLC 方法。将这种 2D-LC 方法应用于大鼠脑样品,我们鉴定出 1031 种蛋白质和 4397 个独特肽段。此外,这种新的二维方法提高了碱性肽的鉴定能力。因此,我们提出这种新型 2D-RP/WCX-RPLC 系统可以作为肽二维分离的替代方法。