New perspectives in the Escherichia coli proteome investigation
Luisa Tonella, Christine Hoogland, Pierre‐Alain Binz, Ron D. Appel, D. F. Hochstrasser, Juana Sánchez
Abstract
Luisa Tonella, Christine Hoogland, Pierre‐Alain Binz, Ron D. Appel, D. F. Hochstrasser, Juana Sánchez
Abstract
Escherichia coli is a model organism for biochemical and biological studies as it is one of the best characterised prokaryote. Two-dimensional polyacrylamide gel electrophoresis, computer image analysis and different protein identification techniques gave rise, in 1995, to the Escherichia coli SWISS-2D PAGE database (http://www.expasy.ch/ch2d/). In the E. coli 3.5–10 SWISS-2D PAGE map, 40% of the E. coli proteome was displayed. The present study demonstrated that the use of narrow range pH gradients is able to potentially display up to a few copies of protein per E. coli cell. Moreover, the six new E. coli SWISS-2D PAGE maps (pH 4–5, 4.5–5.5, 5–6, 5.5–6.7, 6–9 and 6–11) presented here displayed altogether more than 70% of the entire E. coli proteome.
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Escherichia coli is a model organism for biochemical and biological studies as it is one of the best characterised prokaryote. Two-dimensional polyacrylamide gel electrophoresis, computer image analysis and different protein identification techniques gave rise, in 1995, to the Escherichia coli SWISS-2D PAGE database (http://www.expasy.ch/ch2d/). In the E. coli 3.5–10 SWISS-2D PAGE map, 40% of the E. coli proteome was displayed. The present study demonstrated that the use of narrow range pH gradients is able to potentially display up to a few copies of protein per E. coli cell. Moreover, the six new E. coli SWISS-2D PAGE maps (pH 4–5, 4.5–5.5, 5–6, 5.5–6.7, 6–9 and 6–11) presented here displayed altogether more than 70% of the entire E. coli proteome.
Key concepts: Escherichia coli, Proteome, Biology, Microbiology, Computational biology, Proteomics, Bioinformatics, Biochemistry