Manitoba Centre for Proteomics and Systems Biology, 799 JBRC, 715 McDermot Avenue, Winnipeg, R3E 3P4, Canada; Department of Biochemistry and Medical Genetics, University of Manitoba, 336 BMSB, 745 Bannatyne Avenue, Winnipeg, R3E 0J9, Canada.
Manitoba Centre for Proteomics and Systems Biology, 799 JBRC, 715 McDermot Avenue, Winnipeg, R3E 3P4, Canada; Department of Chemistry, University of Manitoba, 360 Parker Building, 144 Dysart Road, Winnipeg, R3T 2N2, Canada.
J Chromatogr A. 2020 May 24;1619:460909. doi: 10.1016/j.chroma.2020.460909. Epub 2020 Jan 22.
Peptide retention time prediction models have been developed for zwitter-ionic ZIC-HILIC and ZIC-cHILIC stationary phases (pH 4.5 eluents) using proteomics-derived retention datasets of ~30 thousand tryptic peptides each. Overall, hydrophilicity of these stationary phases was found to be similar to the previously studied Amide HILIC phase, but lower compared to bare silicas. Peptide retention is driven by interactions of all charged (hydrophilic) residues at pH 4.5 (Asp, Glu, Arg, Lys, His), but shows specificity according to orientation of functional groups in zwitter-ionic pair. Thus, ZIC-cHILIC exhibits an increased contribution of negatively charged Asp and Glu due to the distal positioning of positively charged quaternary amines on the stationary phase. These findings confirm that HILIC interactions are driven by both peptide distribution between water layer adsorbed on the stationary phase and by interactions specific to functional groups of the packing material. Sequence-Specific Retention Calculator HILIC models were optimized for these columns showing 0.967-0.976 R-values between experimental and predicted retention values. ZIC-HILIC separations represent a good choice as a first dimension in 2D LC-MS of peptide mixtures with correlations between retention values of ZIC-HILIC against RPLC found at 0.197 (ZIC-HILIC) and 0.137 (ZIC-cHILIC) R-values, confirming a good orthogonality.
已针对两性离子 ZIC-HILIC 和 ZIC-cHILIC 固定相(pH 4.5 洗脱液)开发了肽保留时间预测模型,这些模型使用了约 3 万个每个肽的蛋白质组学衍生保留数据集。总体而言,这些固定相的亲水性被发现与之前研究的酰胺 HILIC 相相似,但比裸露的硅胶低。在 pH 4.5 时(Asp、Glu、Arg、Lys、His),所有带电(亲水)残基的相互作用驱动肽保留,但根据两性离子对中官能团的取向显示出特异性。因此,由于固定相上带正电荷的季铵盐的远端定位,ZIC-cHILIC 表现出带负电荷的 Asp 和 Glu 的贡献增加。这些发现证实 HILIC 相互作用是由肽在固定相上吸附的水层之间的分布以及与填充材料的官能团的特定相互作用驱动的。针对这些柱子优化了序列特异性保留计算器 HILIC 模型,实验和预测保留值之间的 R 值为 0.967-0.976。ZIC-HILIC 分离是肽混合物二维 LC-MS 的首选第一维,ZIC-HILIC 与 RPLC 之间的保留值相关性为 0.197(ZIC-HILIC)和 0.137(ZIC-cHILIC)R 值,确认了良好的正交性。