
References
Righetti PG, Gelfi C. Immobilized pH gradients for isoelectric focusing. III: pre-
parative separations in highly diluted gels. J Biochem Biophys Methods 9
(1984) 103–119.
Righetti PG. In: Burdon RH, van Knippenberg PH. (Eds.) Immobilized pH gra-
dients: theory and methodology. Elsevier, Amsterdam (1990).
Righetti PG, Castagna A, Antonioli P, Boschetti E. Prefractionation techniques
in proteome analysis: The mining tools of the third millennium. Electrophore-
sis 26 (2005) 297–319.
Rimpilainen M, Righetti PG. Membrane protein analysis by isoelectric focusing
in immobilized pH gradients. Electrophoresis 6 (1985) 419–422.
Roepstorff P and Fohlman J, Proposal for a common nomenclature for sequence
ions in mass spectra of peptides. Biomed Mass Spectrom 11 (1984) 601.
Rose K, Bougueleret L, Baussant T, Bçhm G, Botti P, Colinge J, Cusin I, Gaert-
ner H, Gleizes A, Heller M, Jimenez S, Johnson A, Kussmann M, Menin L,
Menzel1 C, Ranno F, Rodriguez-Tom P, Rogers J, Saudrais C, Villain M,
Wetmore D, Bairoch A, Hochstrasser D. Industrial-scale proteomics: From
liters of plasma to chemically synthesized proteins. Proteomics 4 (2004) 2125–
2150.
Rosenfield J, Capdevielle J, Guillemot JC, Ferrara P. In-gel digestion of proteins
for internal sequence analysis after one- or two-dimensional electrophoresis.
Anal Biochem 203 (1992) 173–179.
Rosengren A, Bjellqvist B, Gasparic V. A simple method for choosing optimum
pH conditions for electrophoresis. In: Radola BJ, Graesslin D. Ed. Electrofo-
cusing and isotachophoresis. W. de Gruyter, Berlin (1977) 165–171.
Ross PL, Huang YLN, Marchese JN, Williamson B, Parker K, Hattan S, Khai-
novski N, Pillai S, Dey S, Daniels S, Purkayastha S, Juhasz P, Martin S, Bart-
let-Jones M, He F, Jacobson A, Pappin DJ. Multiplexed protein quantitation in
Saccharomyces cerevisiae using amine-reactive isobaric tagging reagents. Mol
Cell Proteomics 3 (2004) 1154–1169.
Roth KDW, Huang ZH, Sadagopan N, Throck Watson J. Charge derivatisation of
peptides for analysis by mass spectrometry. Mass Spectrom Reviews 17 (1998)
255–274.
Rozanas CR, Loyland SM. Capabilities using 2-D DIGE in proteomics research:
The new gold standard for two-dimensional gel electrophoresis. In: Liu BCS,
Ehrlich JR. (Eds.) Tissue Proteomics: Approaches for Pathways, Biomarkers,
and Drug Discovery. Humana Press, Totowa, NJ (2006) in press.
Sabounchi-Schtt F, Astrçm J, Olsson I, Eklund A, Grunewald J, Bjellqvist B.
An Immobiline DryStrip application method enabling high-capacity two-
dimensional gel electrophoresis. Electrophoresis 21 (2000) 3649–3656.
Sachon E, Mohammed S, Bache N, Jensen ON. Phosphopeptide quantitation
using amine-reactive isobaric tagging reagents and tandem mass spectrome-
try: application to proteins isolated by gel electrophoresis. Rapid Commun
Mass Spectrom 20 (2006) 1127–1134.
Sanchez J-C, Appel RD, Golaz O, Pasquali C, Ravier F, Bairoch A, Hochstrasser
DF. Inside SWISS-2DPAGE database. Electrophoresis 16 (1995) 1131–1151.
Sanchez JC, Golaz O, Frutiger S, Schaller D, Appel RD, Bairoch A, Hughes GJ,
Hochstrasser DF. The yeast SWISS-2DPAGE database. Electrophoresis 17
(1996) 556–565.
Sanchez J-C, Rouge V, Pisteur M, Ravier F, Tonella L, Moosmayer M, Wilkins
MR, Hochstrasser DF. Improved and simplified in-gel sample application
using reswelling of dry immobilized pH gradients. Electrophoresis 18 (1997)
324–327.
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