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Bioinformatics: Genes, Proteins and Computers

By: Material type: TextTextSeries: Advanced textPublication details: Taylor & Francis / Roultledge 2003Description: XIV-298 p. : ill. ; 25 cmISBN:
  • 1859960545
Subject(s): DDC classification:
  • 572.80285 BIO
Contents:
1. Molecular Evolution. 2. Gene Finding. 3. Sequence Comparison Methods. 4. Amino Acid Residue Conservation. 5. Function Prediction From Protein Sequence. 6. Protein Structure Comparison. 7. Protein Structure Classifications. 8. Comparative Modelling. 9. Protein Structure Prediction. 10. From Protein Structure to Function. 11. From Structure-Based Genome Annotation to Understanding Genes and Proteins. 12. Global Approaches for Studying Protein-Protein Interactions. 13. Predicting The Structure of Protein-Biomolecular Interactions. 14. Experimental Use of DNA Arrays. 15. Mining Gene Expression Data 16. Proteomics. 17. Data Management of Biological Information. 18. Internet Technologies for Bioinformatics.
Summary: Genes, Proteins and Computers (Advanced Text)
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Holdings
Item type Current library Home library Call number Status Date due Barcode
Book Book Dept. of Biochemistry Processing Center Dept. of Biochemistry 572.80285 BIO (Browse shelf(Opens below)) Available BCH2628
Book Book Dept. of Computational Biology and Bioinformatics Processing Center Dept. of Computational Biology and Bioinformatics 572.80285 BIO (Browse shelf(Opens below)) Available DCB1633
Book Book Dept. of Computational Biology and Bioinformatics Processing Center Dept. of Computational Biology and Bioinformatics 572.80285 BIO (Browse shelf(Opens below)) Available DCB393
Book Book Dept. of Computational Biology and Bioinformatics Processing Center Dept. of Computational Biology and Bioinformatics 572.80285 BIO (Browse shelf(Opens below)) Available DCB1869
Book Book Dept. of Futures Studies Processing Center Dept. of Futures Studies 572.80285 ORE (Browse shelf(Opens below)) Available DFS3119

1. Molecular Evolution. 2. Gene Finding. 3. Sequence Comparison Methods. 4. Amino Acid Residue Conservation. 5. Function Prediction From Protein Sequence. 6. Protein Structure Comparison. 7. Protein Structure Classifications. 8. Comparative Modelling. 9. Protein Structure Prediction. 10. From Protein Structure to Function. 11. From Structure-Based Genome Annotation to Understanding Genes and Proteins. 12. Global Approaches for Studying Protein-Protein Interactions. 13. Predicting The Structure of Protein-Biomolecular Interactions. 14. Experimental Use of DNA Arrays. 15. Mining Gene Expression Data 16. Proteomics. 17. Data Management of Biological Information. 18. Internet Technologies for Bioinformatics.

Genes, Proteins and Computers (Advanced Text)

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