Law Henry C H, Kong Ricky P W, Szeto Samuel S W, Zhao Yun, Zhang Zaijun, Wang Yuqiang, Li Guohui, Quan Quan, Lee Simon M Y, Lam Herman C, Chu Ivan K
Department of Chemistry, the University of Hong Kong, Hong Kong, China.
Analyst. 2015 Feb 21;140(4):1237-52. doi: 10.1039/c4an01893a.
An automatable, robust, high-performance online multidimensional liquid chromatography (MDLC) platform comprising of pH 10 reversed-phase (RP), strong cation exchange (SCX), and pH 2 RP separation stages has been integrated into a modified commercial off-the-shelf LC instrument with a simple rewiring, enabling accelerated routine qualitative and quantitative proteomics analyses. This system has been redesigned with a dual-trap column configuration to improve the throughput by greatly decreasing the system idle time. The performance of this new design has been benchmarked through analysis of the total lysate of S. cerevisiae, in comparison with that of the former tailor-made system featuring more complicated components; the total run time per "load-and-go" LC/MS analysis was approximately 24 h, with minimal idle time and no labor-intensive steps. This platform features high-resolution fractionations, ease of use and a high degree of user programmability in the first two chromatographic dimensions, allowing flexible and effective sampling with (RP-SCX-RP) or without (RP-RP) the inclusion of SCX sub-fractionation; good proteome coverage and reproducibility was demonstrated through the analyses of bacterial, cell culture, and monkey brain tissue proteomes. The viability of the 3D RP-SCX-RP has been proven in proteome-wide studies of STO fibroblasts and yeast tryptic digests, resulting in extended proteome and protein coverages with high reproducibility-in particular, discovering extra-hydrophilic peptides-at the expense of the acquisition time. The identified inventory of the rat pheochromocytoma PC12 cell proteome-a total of 6345 proteins and 97 309 unique peptides is the most comprehensive dataset to date-provides an example of the value of the 3D RP-SCX-RP. The use of orthogonal chromatographic dimensions in the 3D RP-SCX-RP also circumvents the issues of isobaric interference of mass-tagging background contaminations, while significantly improving the accuracy of isobaric tags for relative and absolute quantitation (iTRAQ)-based protein quantitation experiments.
一个可自动化、稳健、高性能的在线多维液相色谱(MDLC)平台,由pH 10反相(RP)、强阳离子交换(SCX)和pH 2 RP分离阶段组成,已通过简单的重新布线集成到一台改良的商用现成LC仪器中,实现了蛋白质组学常规定性和定量分析的加速。该系统采用双阱柱配置进行了重新设计,通过大幅减少系统闲置时间来提高通量。通过分析酿酒酵母的总裂解物,对这种新设计的性能进行了基准测试,并与具有更复杂组件的前定制系统进行了比较;每次“即装即走”LC/MS分析的总运行时间约为24小时,闲置时间最短且无需劳动密集型步骤。该平台在前两个色谱维度上具有高分辨率分离、易用性和高度的用户可编程性,允许灵活有效地进行采样,可选择包含(RP-SCX-RP)或不包含(RP-RP)SCX子分离;通过对细菌、细胞培养物和猴脑组织蛋白质组的分析,证明了其良好的蛋白质组覆盖范围和重现性。3D RP-SCX-RP在STO成纤维细胞和酵母胰蛋白酶消化物的全蛋白质组研究中已被证明是可行的,以获取时间为代价,实现了扩展的蛋白质组和蛋白质覆盖范围以及高重现性,特别是发现了超亲水肽。大鼠嗜铬细胞瘤PC12细胞蛋白质组的鉴定清单——总共6345种蛋白质和97309条独特肽段,是迄今为止最全面的数据集——提供了3D RP-SCX-RP价值的一个例子。3D RP-SCX-RP中正交色谱维度的使用还规避了质量标签背景污染的等压干扰问题,同时显著提高了基于等压标签相对和绝对定量(iTRAQ)的蛋白质定量实验的准确性。