| Literature DB >> 23617947 |
Sander R Piersma1, Marc O Warmoes, Meike de Wit, Inge de Reus, Jaco C Knol, Connie R Jiménez.
Abstract
BACKGROUND: SDS-PAGE followed by in-gel digestion (IGD) is a popular workflow in mass spectrometry-based proteomics. In GeLC-MS/MS, a protein lysate of a biological sample is separated by SDS-PAGE and each gel lane is sliced in 5-20 slices which, after IGD, are analyzed by LC-MS/MS. The database search results for all slices of a biological sample are combined yielding global protein identification and quantification for each sample. In large scale GeLC-MS/MS experiments the manual processing steps including washing, reduction and alkylation become a bottleneck. Here we introduce the whole gel (WG) procedure where, prior to gel slice cutting, the processing steps are carried out on the whole gel.Entities:
Year: 2013 PMID: 23617947 PMCID: PMC3656797 DOI: 10.1186/1477-5956-11-17
Source DB: PubMed Journal: Proteome Sci ISSN: 1477-5956 Impact factor: 2.480
Figure 1A schematic overview of the whole-gel procedure (WG) vs. the in-gel digestion procedure (IGD). A. The number of pipettes next to the workflow indicates the amount of manual processing. B. manual processing steps, incubation and gel slicing time breakdown for day 1 for WG and IGD procedures for 1 sample (10 bands) and 9 samples (90 bands). C manual processing steps and incubation time breakdown for day 2. Details for Figure 1B and 1C can be found in Additional file 1: Table 1. D. Gel image showing the location of gel slices IGD 1–5 processed by in-gel digestion (empty regions) and the corresponding counterpart WG 1–5 region processed by the whole-gel procedure for HCT116 cell lysate.
Figure 2Protein identification and quantification. A. Number of protein identifications for each gel slice for IGD (blue), WG (orange), total number of protein IDs in each gel slice (green) and the number of proteins identified in both gel slices (purple) for human HCT116 cell lysate and B. for mouse tumor tissue lysate. C. Spectral counts of proteins identified in both slice IGD and WG plotted for all 5 slice pairs combined for human CRC cell lysate. The line is a linear fit to the data, the slope and corresponding R2 value of the fit are indicated.
Number of protein identifications using the whole gel (WG) procedure vs in gel digestion (IGD)
| Gel Band | 1 | 2 | 3 | 4 | 5 | 1 | 2 | 3 | 4 | 5 | 6 |
| Total ID IGD | 178 | 252 | 300 | 301 | 93 | 86 | 113 | 70 | 100 | 28 | 23 |
| Total ID WG | 178 | 257 | 306 | 315 | 92 | 56 | 115 | 78 | 114 | 52 | 62 |
| Total ID | 192 | 262 | 314 | 324 | 95 | 86 | 121 | 81 | 114 | 52 | 62 |
| Overlap ID | 164 | 247 | 292 | 292 | 90 | 56 | 107 | 67 | 100 | 28 | 23 |
| Only IGD | 14 | 5 | 8 | 9 | 3 | 30 | 6 | 3 | 0 | 0 | 0 |
| Only WG | 14 | 10 | 14 | 23 | 2 | 0 | 8 | 11 | 14 | 24 | 39 |
| Overlap* | 85% | 94% | 93% | 90% | 95% | 65% | 88% | 83% | 88% | 54% | 37% |
| Median Mr (kDa) | 176 | 83 | 44 | 23 | 12 | 124 | 69 | 38 | 29.5 | 19 | 15 |
*Overlap =(Overlap ID/total ID)*100%.
Figure 3Workflow reproducibility of the whole gel procedure. A. Venn diagram of workflow triplicate WG procedure for HCT116 cell lysate. B Venn diagram of workflow triplicate WG procedure for FFPE tumor tissue material. In black: number of identified proteins, in white (central overlap): coefficient of variance on spectral counts of proteins identified in 3/3 samples.