Valeja Santosh G, Xiu Lichen, Gregorich Zachery R, Guner Huseyin, Jin Song, Ge Ying
Department of Cell and Regenerative Biology, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Anal Chem. 2015;87(10):5363-5371. doi: 10.1021/acs.analchem.5b00657. Epub 2015 Apr 29.
To address the complexity of the proteome in mass spectrometry (MS)-based top-down proteomics, multidimensional liquid chromatography (MDLC) strategies that can effectively separate proteins with high resolution and automation are highly desirable. Although various MDLC methods that can effectively separate peptides from protein digests exist, very few MDLC strategies, primarily consisting of 2DLC, are available for intact protein separation, which is insufficient to address the complexity of the proteome. We recently demonstrated that hydrophobic interaction chromatography (HIC) utilizing a MS-compatible salt can provide high resolution separation of intact proteins for top-down proteomics. Herein, we have developed a novel 3DLC strategy by coupling HIC with ion exchange chromatography (IEC) and reverse phase chromatography (RPC) for intact protein separation. We demonstrated that a 3D (IEC-HIC-RPC) approach greatly outperformed the conventional 2D IEC-RPC approach. For the same IEC fraction (out of 35 fractions) from a crude HEK 293 cell lysate, a total of 640 proteins were identified in the 3D approach (corresponding to 201 nonredundant proteins) as compared to 47 in the 2D approach, whereas simply prolonging the gradients in RPC in the 2D approach only led to minimal improvement in protein separation and identifications. Therefore, this novel 3DLC method has great potential for effective separation of intact proteins to achieve deep proteome coverage in top-down proteomics.
为了解决基于质谱(MS)的自上而下蛋白质组学中蛋白质组的复杂性问题,非常需要能够以高分辨率和自动化有效分离蛋白质的多维液相色谱(MDLC)策略。尽管存在各种能够有效从蛋白质消化物中分离肽段的MDLC方法,但用于完整蛋白质分离的MDLC策略却非常少,主要是二维液相色谱(2DLC),这不足以应对蛋白质组的复杂性。我们最近证明,利用与MS兼容的盐的疏水相互作用色谱(HIC)可为自上而下的蛋白质组学提供完整蛋白质的高分辨率分离。在此,我们通过将HIC与离子交换色谱(IEC)和反相色谱(RPC)联用,开发了一种用于完整蛋白质分离的新型3DLC策略。我们证明,三维(IEC-HIC-RPC)方法大大优于传统的二维IEC-RPC方法。对于来自粗制HEK 293细胞裂解物的相同IEC级分(共35个级分),三维方法中共鉴定出640种蛋白质(对应于201种非冗余蛋白质),而二维方法中只有47种,而在二维方法中简单延长RPC梯度只会导致蛋白质分离和鉴定的最小改善。因此,这种新型3DLC方法在有效分离完整蛋白质以实现自上而下蛋白质组学的深度蛋白质组覆盖方面具有巨大潜力。