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List of contributors | p. viii |
Introduction | p. 1 |
Network views of the cell | p. 4 |
The network hypothesis | p. 4 |
The central dogma and gene regulatory networks | p. 5 |
Protein-protein interaction networks | p. 7 |
Metabolic networks | p. 9 |
Signaling networks | p. 11 |
Networked networks and cell functionality | p. 12 |
Concluding remarks | p. 13 |
Transcriptional regulatory networks | p. 14 |
Introduction | p. 14 |
Transcriptional regulation in prokaryotes and eukaryotes | p. 19 |
Structure of transcriptional regulatory networks | p. 20 |
Evolution of transcriptional regulatory networks | p. 25 |
Dynamics of transcriptional regulatory networks | p. 29 |
Conclusions | p. 34 |
Transcription factors and gene regulatory networks | p. 36 |
Introduction | p. 36 |
Promoters' complexity/eukaryotic gene promoters | p. 37 |
Transcription factors | p. 41 |
Bioinformatics of regulatory networks | p. 46 |
Experimental methods for protein interaction identification | p. 53 |
Introduction | p. 53 |
Protein complementation techniques | p. 57 |
Affinity purification methods | p. 62 |
Protein complex purification and mass spectrometry | p. 65 |
Protein and peptide chips | p. 73 |
Other methods for interaction detection and functional analysis | p. 74 |
Quality of large-scale interaction data | p. 75 |
Comparison of methods | p. 77 |
Conclusions | p. 80 |
Modeling protein interaction networks | p. 83 |
Introduction | p. 83 |
Scaling laws and network topology | p. 85 |
Predicting protein interactions | p. 87 |
Towards models at an atomic level of resolution | p. 88 |
Concluding remarks | p. 90 |
Dynamics and evolution of metabolic networks | p. 93 |
Introduction | p. 93 |
Cellular metabolism and its regulation | p. 93 |
Metabolism across disciplines | p. 96 |
Dynamics of a metabolic system | p. 98 |
Stoichiometric analysis | p. 100 |
Constraint-based modeling: feasible states and optimality | p. 103 |
Predicting genetic perturbations | p. 108 |
Double perturbations and epistatic interactions | p. 109 |
The ancient history of metabolism: from cell-scale to biosphere-scale | p. 112 |
Conclusions | p. 116 |
Hierarchical modularity in biological networks: the case of metabolic networks | p. 117 |
Introduction | p. 117 |
Modularity and hubs in biological networks | p. 119 |
Scaling of the clustering coefficient: a signature of hierarchy | p. 121 |
Method for finding network modules | p. 123 |
A case study: the E. coli metabolic network | p. 126 |
Hierarchy, fractality and the small world of networks | p. 131 |
Conclusions | p. 134 |
Signalling networks | p. 135 |
Introduction | p. 135 |
Chemical signalling: many pathways following a few general themes | p. 136 |
Cross-talks among signal transduction pathways | p. 159 |
Signalling networks, system organization and modelling | p. 166 |
Conclusions and outlook | p. 169 |
Complex networks: from local to global properties | p. 170 |
Modelling the local structure of networks | p. 188 |
Higher-order topological properties | p. 210 |
Elementary mathematical concepts | p. 219 |
References | p. 235 |
Index | p. 269 |
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