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InhaltsverzeichnisNot All Scale Free Networks Are Born Equal: The Role of the Seed Graph in PPI Network Emulation.- Probabilistic Paths for Protein Complex Inference.- Markov Additive Chains and Applications to Fragment Statistics for Peptide Mass Fingerprinting.- A Context-Specific Network of Protein-DNA and Protein-Protein Interactions Reveals New Regulatory Motifs in Human B Cells.- Identification and Evaluation of Functional Modules in Gene Co-expression Networks.- A Linear Discrete Dynamic System Model for Temporal Gene Interaction and Regulatory Network Influence in Response to Bioethanol Conversion Inhibitor HMF for Ethanologenic Yeast.- A Computational Approach for the Identification of Site-Specific Protein Glycosylations Through Ion-Trap Mass Spectrometry.- De Novo Signaling Pathway Predictions Based on Protein-Protein Interaction, Targeted Therapy and Protein Microarray Analysis.- Alignment of Mass Spectrometry Data by Clique Finding and Optimization.
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Systems biology and computational proteomics, Trey Ideker
- Sprache
- Erscheinungsdatum
- 2007
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- Titel
- Systems biology and computational proteomics
- Sprache
- Englisch
- Autor*innen
- Trey Ideker
- Verlag
- Springer
- Erscheinungsdatum
- 2007
- ISBN10
- 3540730591
- ISBN13
- 9783540730590
- Kategorie
- Skripten & Universitätslehrbücher
- Beschreibung
- InhaltsverzeichnisNot All Scale Free Networks Are Born Equal: The Role of the Seed Graph in PPI Network Emulation.- Probabilistic Paths for Protein Complex Inference.- Markov Additive Chains and Applications to Fragment Statistics for Peptide Mass Fingerprinting.- A Context-Specific Network of Protein-DNA and Protein-Protein Interactions Reveals New Regulatory Motifs in Human B Cells.- Identification and Evaluation of Functional Modules in Gene Co-expression Networks.- A Linear Discrete Dynamic System Model for Temporal Gene Interaction and Regulatory Network Influence in Response to Bioethanol Conversion Inhibitor HMF for Ethanologenic Yeast.- A Computational Approach for the Identification of Site-Specific Protein Glycosylations Through Ion-Trap Mass Spectrometry.- De Novo Signaling Pathway Predictions Based on Protein-Protein Interaction, Targeted Therapy and Protein Microarray Analysis.- Alignment of Mass Spectrometry Data by Clique Finding and Optimization.