Nanowell-mediated two-dimensional liquid chromatography enables deep proteome profiling of <1000 mammalian cells

纳米孔介导的二维液相色谱可对不到 1000 个哺乳动物细胞进行深度蛋白质组分析

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作者:Maowei Dou, Ying Zhu, Andrey Liyu, Yiran Liang, Jing Chen, Paul D Piehowski, Kerui Xu, Rui Zhao, Ronald J Moore, Mark A Atkinson, Clayton E Mathews, Wei-Jun Qian, Ryan T Kelly

Abstract

Multidimensional peptide separations can greatly increase the depth of coverage in proteome profiling. However, a major challenge for multidimensional separations is the requirement of large biological samples, often containing milligram amounts of protein. We have developed nanowell-mediated two-dimensional (2D) reversed-phase nanoflow liquid chromatography (LC) separations for in-depth proteome profiling of low-nanogram samples. Peptides are first separated using high-pH LC and the effluent is concatenated into 4 or 12 nanowells. The contents of each nanowell are reconstituted in LC buffer and collected for subsequent separation and analysis by low-pH nanoLC-MS/MS. The nanowell platform minimizes peptide losses to surfaces in offline 2D LC fractionation, enabling &gt;5800 proteins to be confidently identified from just 50 ng of HeLa digest. Furthermore, in combination with a recently developed nanowell-based sample preparation workflow, we demonstrated deep proteome profiling of &gt;6000 protein groups from small populations of cells, including ∼650 HeLa cells and 10 single human pancreatic islet thin sections (∼1000 cells) from a pre-symptomatic type 1 diabetic donor.

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