Source: Cheng, L. C., et al. Phosphopeptide Enrichment Coupled with Label-free Quantitative Mass Spectrometry to Investigate the Phosphoproteome in Prostate Cancer. J. Vis. Exp. (2018).
In this video, we demonstrate antibody-based immunoprecipitation of phosphopeptides from a peptide mixture. The enriched phosphopeptides are vacuum concentrated and stored for downstream analysis.
1. Immunoprecipitation and Enrichment of pY Peptides
Table 1: Buffers and solutions. This table shows the compositions of the buffers and solutions used in this protocol.
Buffer | Volume | Composition |
6 M Guanidinium chloride lysis buffer | 50 mL | 6 M guanidinium chloride, 100 mM tris pH 8.5, 10 mM tris (2-carboxyethyl) phosphine, 40 mM chloroacetamide, 2 mM sodium orthovanadate, 2.5 mM sodium pyrophosphate, 1 mM β-glycerophosphate, 500 mg n-octyl-glycoside, ultra-pure water to volume |
100 mM Sodium pyrophosphate | 50 mL | 2.23 g sodium pyrophosphate decahydrate, ultra-pure water to volume |
1M β-glycerophosphate | 50 mL | 15.31 g β-glycerophosphate, ultra-pure water to volume |
5% Trifluoroacetic acid | 20 mL | Add 1 mL of 100% trifluoroacetic acid into 19 mL ultra-pure water |
0.1% Trifluoroacetic acid | 250 mL | Add 5 mL 5% trifluoroacetic acid to 245 mL ultra-pure water |
pY elution buffer | 250 mL | 0.1% trifluoroacetic acid, 40% acetonitrile, ultra-pure water to volume |
pST elution buffer | 250 mL | 0.1%trifluoroacetic acid, 50% acetonitrile, ultra-pure water to volume |
IP binding buffer | 200 mL | 50 mM tris pH 7.4, 50 mM sodium chloride, ultra-pure water to volume |
25 mM Ammonium bicarbonate, pH 7.5 | 10 mL | Dissolve 19.7 mg into 10 mL sterile ultra-pure water, pH to 7.5 with 1 N hydrochloric acid (~10-15 µL/10 ml solution), make fresh |
1M phosphate buffer, pH 7 | 1,000 mL | 423 mL 1 M sodium dihydrogen phosphate, 577 mL 1 M sodium hydrogen phosphate |
Equilibration buffer | 14 mL | 6.3 mL acetonitrile, 280 µL 5% trifluoroacetic acid, 1740 µL lactic acid, 5.68 mL ultra-pure water |
Rinsing buffer | 20 mL | 9 mL acetonitrile, 400 µL 5% trifluoroacetic acid, 10.6 mL ultra-pure water |
Mass spectrometry solution | 10 mL | 500 µL acetonitrile, 200 µL 5% trifluoroacetic acid, 9.3 mL ultra-pure water |
Buffer A | 250 mL | 5 mM monopotassium phosphate (pH 2.65), 30% acetonitrile, 5 mM potassium chloride,ultra-pure water to volume |
Buffer B | 250 mL | 5 mM monopotassium phosphate (pH 2.65), 30% acetonitrile, 350 mM potassium chloride, ultra-pure water to volume |
0.9% Ammonium hydroxide | 10 mL | 300 μL 29.42% ammonium hydroxide, 9.7 mL ultra-pure water |
The authors have nothing to disclose.
Lyophilizer | Labconco | 7420020 | |
CentriVap Benchtop Vacuum Concentrator | Labconco | 7810010 | |
Kimwipes | Fisher Scientific | 06-666A | |
Millipore 0.2 µm spin filter | Millipore Sigma | UFC30GVNB | |
Low protein-binding Eppendorf tubes | Eppendorf | 22431081 | |
anti-Phosphotyrosine, Agarose, Clone: 4G10 | Millipore Sigma | 16101 | |
27B10.4 antibody | Cytoskeleton | APY03-beads | |
Peptide assay kit | Thermo Scientific | 23275 | |
TopTip | PolyLC Inc | TT200TIO.96 | |
SCX columns (PolySULFOETHYL A) | PolyLC Inc | SPESE1203 | |
3 mL syringe | BD | 309657 | |
MilliQ water | Deionized water used to prepare all solutions and bufferes | ||
Trifluoracetic Acid (TFA) | Fisher Scientific | PI-28904 | |
Acetonitrile (ACN) | Fisher Scientific | A21-1 | |
Potassium Chloride | Fisher Scientific | BP366-500 | |
Lactic acid | Sigma-Aldrich | 69785-250ML | |
Ammonium Hydroxide | Fisher Scientific | A669S-500 | |
Tris Base | Fisher Scientific | BP152-5 |