Bioinformatics Lectures
Previous Lecture 10th Lecture Summer Course - Functional Genomics III: Proteomics Next Lecture
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  1. Functional Genomics  III -  Proteomics
  2. Dissecting Cellular Pathways III - Proteome Analysis
  3. Proteome Profiling
  4. Genomics Core Technologies
  5. The Proteome - A 2D Map of All Proteins Present in a Cell
  6. Established Proteome for Yeast
  7. The in silico Bacillus subtilis Proteome
  8. The Bacillus subtilis Proteome
  9. Various Bacillus subtilis Proteomes Are Available
  10. 2d PAGE of the Proteins From Escherichia coli
  11. Reproducibility - a Key Factor in Proteomics
  12. Comparison of the 2 Standard 2d PAGE Methods
  13. Infos on Electrophoresis on the Web
  14. Operation Manual for 2d PAGE Analysis of Proteins
  15. Correlating Protein Quantity and Cell Physiology
  16. Changes in Protein Levels are visible on 2D Gels
  17. Characterizing the Proteins
  18. Proteins are Post-translationally Modified
  19. Post-Translational Modifications I
  1. Post-Translational Modifications II
  2. 2D PAGE: Protein Modifications are revealed
  3. Protein Masses can be determined by Mass Spectrometry
  4. Mass Spectrometer (MALDI TOF)  I
  5. Mass Spectrometer (MALDI TOF)  II
  6. Proteomic Identification of Proteins via 2D Gels
  7. Internet Software for MS Analysis
  8. MS-Fit
  9. ProFound
  10. ProteinProspector
  11. PepFrag
  12. Mass Determination of Proteins and Glycoproteins
  13. Recognition of post-translational Modifications of Proteins
  14. Spectra Quality in Automated MALDI-TOF MS
  15. Identification of Proteins by Fast ESI LC/MS/MS Screening
  16. Peptide Fingerprint Mapping by MS
  17. 2D Gel Comparison via Internet
  18. The Proteomic Workflow
  19. The New Way to Innovative Targets in Drug Research
 ©    Klaus P. Schäfer - Last Update  13.05.2003