| Literature DB >> 15941475 |
Matthew A Churchward1, R Hussain Butt, John C Lang, Kimberly K Hsu, Jens R Coorssen.
Abstract
BACKGROUND: The analysis of hydrophobic membrane proteins by two-dimensional gel electrophoresis has long been hampered by the concept of inherent difficulty due to solubility issues. We have optimized extraction protocols by varying the detergent composition of the solubilization buffer with a variety of commercially available non-ionic and zwitterionic detergents and detergent-like phospholipids.Entities:
Year: 2005 PMID: 15941475 PMCID: PMC1184097 DOI: 10.1186/1477-5956-3-5
Source DB: PubMed Journal: Proteome Sci ISSN: 1477-5956 Impact factor: 2.480
Figure 1Composite of 1D SDS-PAGE analyses of RBC ghost membranes extracted with A) 4% CHAPS, B) 2% SDS, C) 2% LPC, D) 2% lauric acid, E) 2% trans, trans-farnesol, F) 2% MEGA 8, G) 2% MEGA 9, H) 2% MEGA 10, I) 2% 1,2 dioleoyloxy -3-(dimethylamino)propane, J) 2% SB 3–10 (Sigma), K) 2% SB 3–10 (Calbiochem), L) C12E8, M)1-oleoyl-sn-glycerol, N) DL-α-O-benzylglycerol. Arrows indicate notable differences between extractions including 1, the multiple transmembrane spanning protein band III.
Summary of detergents tested using systematic 1D SDS-PAGE analysis. Overall extraction efficacy analyzed by 1D SDS-PAGE or 2-DE separation is expressed qualitatively relative to SDS extraction (for 1D analysis) or CHAPS extraction (for 2-DE). + indicates compatibility but poor perfomance, ++ indicates similar or slightly worse than CHAPS extraction, +++ indicates performance equal to or better than CHAPS, – indicates incompatibility.
| Detergent | 1D-PAGE | 2-DE | Comments & Rationale |
| SDS | +++ | - | IEF incompatible |
| CHAPS | ++ | +++ | Poor extraction of hydrophobic and high molecular weight proteins |
| +++ | ++ | Natural isoprenoid | |
| MEGA-8a | +++ | ++ | Group of nonionic detergents commonly used for protein purification [35,36] |
| MEGA-9b | +++ | ++ | |
| MEGA-10c | +++ | +++ | |
| amidosulfobetaine-14 (ASB-14) | +++ | ++ | Sulfobetaine-based detergents reported to improve membrane protein extraction [24-26] |
| Zwittergent® 3–10/SB 3–10d | +++ | +++ | |
| LPC (synthetic, lauroyl chain)e | +++ | +++ | Zwitterionic lysophospholipid |
| LPC (egg, mixed chain)e | ++ | ++ | Zwitterionic lysophospholipid |
| LPS (bovine brain)f | ++ | - | Anionic lysophospholipid, incompatible with IEF |
| LPE (egg, mixed chain)g | - | - | Zwitterionic lysophospholipid; low solubility in high urea buffer |
| LPG (egg, mixed chain)h | ++ | - | Anionic lysophospholipid, incompatible with IEF |
| LPA (egg, mixed chain)i | ++ | - | Anionic lysophospholipid, incompatible with IEF |
| cardiolipin (bovine heart) | ++ | - | Anionic lipid, incompatible with IEF, low solubility in high urea buffer |
| 5,7-docosadiynoic acid | - | - | Synthetic fatty acid; low solubility in high urea buffer |
| lauric acid | +++ | ++ | Medium chain fatty acid; low solubility in high urea buffer |
| free fatty acids (mixed) | - | - | Mixed natural fatty acids; low solubility in high urea buffer |
| DODAPj | +++ | - | Cationic lipid used as a transfection reagent [37], IEF incompatible |
| 1-oleoyl- | + | - | Uncharged monoacylated lipid, very low solubility in high urea buffer |
| C12E8k | + | - | Nonionic detergent used to study membrane proteins [38] |
| DL-α-O-benzylglycerol | + | - | Amphipathic cyclic glycerol conjugate |
| tryptophol | ++ | - | Amphipathic heterocyclic metabolite of tryptophan; ionizable at low pH |
a octanoyl-N-methylglucamide
b nonanoyl-N-methylglucamide
c decanoyl-N-methylglucamide
d N-decyl-N,N-dimethyl-3-ammonio-1-propanesulfonate
e L-α-lysophosphatidylcholine
f L-α-lysophosphatiylserine
g L-α-lysophosphatidylethanolamine
h L-α-lysophosphatidylglycerol
i L-α-lysophosphatidic acid
j 1,2-dioleoyloxy-3-(dimethylamino)propane
k octaethylene glycol monododecyl ether
Figure 22-DE of RBC ghost membranes extracted with A) 4% CHAPS, B) 3% CHAPS : 1% LPC, C) 3% CHAPS : 1% MEGA 10, D) 3% CHAPS : 0.5% LPC : 0.5% MEGA 10. Extractions were carried out in buffer with 8 M urea, 2 M thiourea, protease inhibitor cocktail, and the indicated detergent for 1 hour on ice. Gels are representative of three independent experiments. Roman numerals indicate areas of improvement including i, the multiple transmembrane spanning protein band III.
Figure 32-DE of mouse brain membranes extracted with A) 4% CHAPS, B) 3% CHAPS : 1% LPC, C) 3% CHAPS : 1% MEGA 10, D) 3% CHAPS : 0.5% LPC : 0.5% MEGA 10. Extractions were carried out as for Fig. 2. Gels are representative of three independent experiments. Areas defined with Roman numerals are shown in Fig. 4.
Figure 52-DE gels of mouse liver membranes extracted with A) 4% CHAPS, B) 3% CHAPS : 1% LPC. Extractions were carried out as for Fig. 2. Gels are representative of three independent experiments. Arrow indicates specific differences between gels.
Figure 4Enlargement and contrast of selected regions after 2-DE of mouse brain membranes (see areas defined in Fig 3). Areas i-vi show selective increases in spot number, resolution, and density. Samples were extracted with A) 4% CHAPS, B) 3% CHAPS : 1% LPC, C) 3% CHAPS : 1% MEGA 10, D) 3% CHAPS : 0.5% LPC : 0.5% MEGA 10. Results are representative of three independent experiments. Green arrows indicate spots showing increased volume and density, red arrows indicate decrease, blue arrows indicate novel spots.