Van Eyk, Dunn - Proteomic and Genomic Analysis of Cardiovascular Disease - 2003 (522919), страница 69
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Friso, L. Wikström. ‘Analysis of proteins from membrane-enriched cerebellarpreparations by two-dimensional gel electrophoresis and mass spectrometry.’ Electrophoresis 1999, 20, 917–927.R. E. Jenkins et al. ‘Regulation of growthfactor induced gene expression by calcium signalling: Integrated mRNA andprotein expression analysis.’ Proteomics2001, 1, 1092–1104.X. P. Li et al.
‘A two-dimensional electrophoresis database of rat heart proteins.’Electrophoresis 1999, 20, 891–897.A. C. Shaw et al. ‘Mapping and identification of HeLa cell proteins separated byimmobilized pH-gradient two-dimensional gel electrophoresis and construction of a two-dimensional polyacrylamidegel electrophoresis database.’ Electrophoresis 1999, 20, 977–983.H. Schagger, K. Pfeiffer. ‘The ratio ofoxidative phosphorylation complexes I-Vin bovine heart mitochondria and thecomposition of respiratory chain supercomplexes.’ Journal of Biological Chemistry 2001, 276, 37861–37867.B. Thiede, C.
Dimmler, F. Siejak, T.Rudel. ‘Predominant identification ofRNA-binding proteins in Fas- inducedapoptosis by proteome analysis.’ Journalof Biological Chemistry 2001, 276, 26044–26050.A. S. Vercoutter-Edouart et al. ‘Proteomic detection of changes in protein synthesis induced by fibroblast growth factor-2 in MCF-7 human breast cancercells.’ Experimental Cell Research 2001,262, 59–68.F. Kernec, M. Unlu, W. Labeikovsky,J. S. Minden, A. P. Koretsky.
‘Changesin the mitochondrial proteome frommouse hearts deficient in creatine kinase.’ Physiological Genomics 2001, 6, 117–128.R. E. Jenkins, S. R. Pennington. ‘Arraysfor protein expression profiling: Towardsa viable alternative to two-dimensionalgel electrophoresis?’ Proteomics 2001, 1,13–29.H. Gmuender et al.
‘Gene expressionchanges triggered by exposure of Haemo-63646566676869707172philus influenzae to novobiocin or ciprofloxacin: Combined transcription andtranslation analysis.’ Genome Research2001, 11, 28–42.W. F. Patton. ‘A thousand points oflight: The application of fluorescence detection technologies to two-dimensionalgel electrophoresis and proteomics.’ Electrophoresis 2000, 21, 1123–1144.W. F. Patton, in Proteomics: From proteinsequence to function S. P. Pennington,M.
J. Dunn, Eds. (Bios Scientific Publishers Ltd, Oxford, 2000).F. Gharahdaghi, C. R. Weinberg, D. A.Meagher, B. S. Imai, S. M. Mische.‘Mass spectrometric identification of proteins from silver-stained polyacrylamidegel: a method for the removal of silverions to enhance sensitivity.’ Electrophoresis 1999, 20, 601–605.W. M. Lauber et al. ‘Mass spectrometrycompatibility of two-dimensional gel protein stains.’ Electrophoresis 2001, 22, 906–918.K. Klarskov, S.
Naylor. ‘India Ink staining after sodium dodecyl sulfate polyacrylamide gel electrophoresis and in conjunction with Western blots for peptidemapping by matrix-assisted laser desorption/ionization time-of-flight mass Spectrometry.’ Rapid Communications in MassSpectrometry 2002, 16, 35–42.M.
Quadroni, P. James. ‘Proteomics andautomation.’ Electrophoresis 1999, 20,664–677.R. Tonge et al. ‘Validation and development of fluorescence two-dimensionaldifferential gel electrophoresis proteomics technology.’ Proteomics 2001, 1, 377–396.M. Unlü, M. E. Morgan, J. S. Minden.‘Difference gel electrophoresis: a singlegel method for detecting changes in protein extracts.’ Electrophoresis 1997, 18,2071–2077.R. A. Craven, R. E. Banks. ‘Laser capturemicrodissection and proteomics: Possibilities and limitation.’ Proteomics 2001, 1,1200–1204.D.
K. Ornstein et al. ‘Proteomic analysisof laser capture microdissected humanprostate cancer and in vitro prostate celllines.’ Electrophoresis 2000, 21, 2235–2242.14.7 References737475767778798081828384M. P. Molloy et al. ‘Extraction of membrane proteins by differential solubilization for separation using two-dimensional gel electrophoresis.’ Electrophoresis1998, 19, 837–844.M. F. Lopez, in Proteomics: From proteinsequence to function S. R. Pennington,M. J. Dunn, Eds. (Bios Scientific Publishers Ltd, Oxford, 2000).M. F.
Lopez. ‘Better approaches to finding the needle in a haystack: Optimizingproteome analysis through automation.’Electrophoresis 2000, 21, 1082–1093.M. Traini et al. ‘Towards an automatedapproach for protein identification inproteome projects.’ Electrophoresis 1998,19, 1941–1949.A.
J. Nicola, A. Gusev, A. Proctor,D. M. Hercules. ‘Automation of data collection for matrix assisted laser desorption/ionization mass spectrometry usinga correlative analysis algorithm.’ Analytical Chemistry 1998, 70, 3213–3219.O. N. Jensen, P. Mortensen, O. Vorm, M.Mann. ‘Automation of matrix-assisted laser desorption/ionization mass spectrometry using fuzzy logic feedback control.’Analytical Chemistry 1997, 69, 1706–1714.D. S. Hage. ‘Affinity chromatography: areview of clinical applications.’ ClinicalChemistry 1999, 45, 593–615.T. Manabe. ‘Combination of electrophoretic techniques for comprehensiveanalysis of complex protein systems.’Electrophoresis 2000, 21, 1116–1122.G. J. Opiteck, S.
M. Ramirez, J. W. Jorgenson, M. A. Moseley III. ‘Comprehensive two-dimensional high-performance liquid chromatography for the isolation of overexpressed proteins and proteome mapping.’ Analytical Biochemistry1998, 258, 349–361.J. P. C. Vissers.
‘Recent developments inmicrocolumn liquid chromatography.’Journal of Chromatography a 1999, 856,117–143.L. A. Colon, Y. Guo, A. Fermier. ‘Capillary electrochromatography.’ AnalyticalChemistry 1997, 69, A461–A467.S. P. Gygi et al. ‘Quantitative analysis ofcomplex protein mixtures using isotopecoded affinity tags.’ Nature Biotechnology1999, 17, 994–999.8586878889909192939495T. J.
Griffin et al. ‘Quantitative proteomic analysis using a MALDI quadrupoletime- of-flight mass spectrometer.’ Analytical Chemistry 2001, 73, 978–986.D. K. Han, J. Eng, H. Zhou, R. Aebersold. ‘Quantitative profiling of differentiation-induced microsomal proteinsusing isotope-coded affinity tags andmass spectrometry.’ Nature Biotechnology2001, 19, 946–951.M. B Smolka, H. Zhou, S. Purkayastha, R.
Aebersold. ‘Optimizationof the isotope-coded affinity tag-labelingprocedure for quantitative proteome analysis.’ Analytical Biochemistry 2001, 297,25–31.V. Dolnik, S. R. Liu, S. Jovanovich.‘Capillary electrophoresis on microchip.’Electrophoresis 2000, 21, 41–54.A. R. Dongre, J. K. Eng, J. R. Yates.‘Emerging tandem-mass-spectrometrytechniques for the rapid identification ofproteins.’ Trends in Biotechnology 1997,15, 418–425.B.
B. Feng, M. S. McQueney, T. M. Mezzasaima, J. R. Slemmon. ‘An integratedten-pump, eight-channel parallel LC/MSsystem for automated high-throughputanalysis of proteins.’ Analytical Chemistry2001, 73, 5691–5697.B. He, F. Regnier. ‘Microfabricated liquid chromatography columns based oncollocated monolith support structures.’Journal of Pharmaceutical and BiomedicalAnalysis 1998, 17, 925–932.L. J. Jin, J. Ferrance, J.
P. Landers.‘Miniaturized electrophoresis: An evolving role in laboratory medicine.’ Biotechniques 2001, 31, 1332–+.S. D. Patterson, R. Aebersold, D. R.Goodlett, in Proteomics: From protein sequence to function S. P. Pennington, M. J.Dunn, Eds. (Bios Scientific PublishersLtd, Oxford, 2000).F. E.
Regnier, B. He, S. Lin, J. Busse.‘Chromatography and electrophoresis onchips: critical elements of future integrated, microfluidic analytical systemsfor life science.’ Trends in Biotechnology1999, 17, 101–106.D. Figeys, R. Aebersold. ‘Microfabricated modules for sample handling, sample concentration and flow mixing: appli-24925014 Protein Chip Technology96979899100101102103104105106cation to protein analysis by tandemmass spectrometry.’ Journal of Biomechanical Engineering 1999, 121, 7–12.A. I. Lamond, M.
Mann. ‘Cell biologyand the genome projects – A concertedstrategy for characterizing multiproteincomplexes by using mass spectrometry.’Trends in Cell Biology 1997, 7, 139–142.P. J. Mintz, S. D. Patterson, A. F. Neuwald, C. S. Spahr, D. L. Spector. ‘Purification and biochemical characterizationof interchromatin granule clusters.’EMBO Journal 1999, 18, 4308–4320.C. S. Spahr et al. ‘Towards defining theurinary proteome using liquid chromatography-tandem mass spectrometry I.
Profiling an unfractionated tryptic digest.’Proteomics 2001, 1, 93–107.G. Schmitt-Ulms et al. ‘Binding of neural cell adhesion molecules (N-CAMs) tothe cellular prion protein.’ Journal of Molecular Biology 2001, 314, 1209–1225.J. M. Peng, S. P. Gygi. ‘Proteomics: themove to mixtures.’ Journal of Mass Spectrometry 2001, 36, 1083–1091.E. C. Koc, W. Burkhart, K. Blackburn,A. Moseley, L. L.