Pages that link to "Q35574132"
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The following pages link to Evolution and topology in the yeast protein interaction network (Q35574132):
Displaying 50 items.
- The Protein Interaction Network of Bacteriophage Lambda with Its Host, Escherichia coli (Q22061801) (← links)
- The EHEC-host interactome reveals novel targets for the translocated intimin receptor (Q24310471) (← links)
- Genomes, phylogeny, and evolutionary systems biology (Q24527374) (← links)
- Global topological features of cancer proteins in the human interactome (Q24672981) (← links)
- Evolutionary cores of domain co-occurrence networks (Q24792821) (← links)
- The yeast kinome displays scale free topology with functional hub clusters (Q24816173) (← links)
- Effect of dataset selection on the topological interpretation of protein interaction networks (Q24816759) (← links)
- Stable evolutionary signal in a yeast protein interaction network (Q25255720) (← links)
- Computational prediction of protein-protein interactions in Leishmania predicted proteomes (Q28484265) (← links)
- The nature of protein domain evolution: shaping the interaction network (Q28749165) (← links)
- Co-expression among constituents of a motif in the protein-protein interaction network (Q30491292) (← links)
- Rich-club phenomenon in the interactome of P. falciparum--artifact or signature of a parasitic life style? (Q30830693) (← links)
- Modeling protein network evolution under genome duplication and domain shuffling (Q30838604) (← links)
- Protein protein interactions, evolutionary rate, abundance and age. (Q33236253) (← links)
- Topology and weights in a protein domain interaction network--a novel way to predict protein interactions (Q33244269) (← links)
- Co-evolutionary analysis of domains in interacting proteins reveals insights into domain-domain interactions mediating protein-protein interactions (Q33256165) (← links)
- Towards the identification of essential genes using targeted genome sequencing and comparative analysis (Q33260930) (← links)
- SigFlux: a novel network feature to evaluate the importance of proteins in signal transduction networks (Q33264723) (← links)
- Inferring topology from clustering coefficients in protein-protein interaction networks (Q33265102) (← links)
- Influence of degree correlations on network structure and stability in protein-protein interaction networks (Q33293731) (← links)
- Investigations into the relationship between feedback loops and functional importance of a signal transduction network based on Boolean network modeling (Q33302580) (← links)
- The prediction of protein-protein interaction networks in rice blast fungus (Q33381886) (← links)
- Directed mammalian gene regulatory networks using expression and comparative genomic hybridization microarray data from radiation hybrids (Q33466798) (← links)
- Towards the prediction of essential genes by integration of network topology, cellular localization and biological process information (Q33503874) (← links)
- Transcript profiling of common bean (Phaseolus vulgaris L.) using the GeneChip Soybean Genome Array: optimizing analysis by masking biased probes (Q33575205) (← links)
- Evidence for the additions of clustered interacting nodes during the evolution of protein interaction networks from network motifs (Q33906212) (← links)
- Computational prediction of host-parasite protein interactions between P. falciparum and H. sapiens (Q34082740) (← links)
- Involvement of microRNA families in cancer. (Q34320326) (← links)
- Iteration method for predicting essential proteins based on orthology and protein-protein interaction networks (Q34342703) (← links)
- Dissecting the human protein-protein interaction network via phylogenetic decomposition (Q34552423) (← links)
- Important miRs of pathways in different tumor types (Q34566039) (← links)
- Identifying correlations between chromosomal proximity of genes and distance of their products in protein-protein interaction networks of yeast (Q34618380) (← links)
- A kinetic model of the evolution of a protein interaction network (Q34622500) (← links)
- A comprehensive Plasmodium falciparum protein interaction map reveals a distinct architecture of a core interactome (Q34698488) (← links)
- Connectedness of PPI network neighborhoods identifies regulatory hub proteins. (Q34771449) (← links)
- Genomic and network patterns of schizophrenia genetic variation in human evolutionary accelerated regions (Q35533902) (← links)
- Essentiality and centrality in protein interaction networks revisited (Q35603942) (← links)
- Model-based clustering reveals vitamin D dependent multi-centrality hubs in a network of vitamin-related proteins (Q35690140) (← links)
- ncRDeathDB: A comprehensive bioinformatics resource for deciphering network organization of the ncRNA-mediated cell death system (Q35797313) (← links)
- Inference of Evolutionary Forces Acting on Human Biological Pathways (Q35826236) (← links)
- A protein complex network of Drosophila melanogaster (Q35869080) (← links)
- Investigating the Relationship between Topology and Evolution in a Dynamic Nematode Odor Genetic Network (Q36302578) (← links)
- Protein interaction networks in plants (Q36436811) (← links)
- The interactome of Streptococcus pneumoniae and its bacteriophages show highly specific patterns of interactions among bacteria and their phages (Q36824286) (← links)
- Evolution of biomolecular networks: lessons from metabolic and protein interactions (Q37620156) (← links)
- Predicting protein-protein interactions in the context of protein evolution (Q37660067) (← links)
- Multispecific Recognition: Mechanism, Evolution, and Design (Q37828137) (← links)
- Efficiency of the immunome protein interaction network increases during evolution (Q38268218) (← links)
- Characterization of proteins in S. cerevisiae with subcellular localizations. (Q38387252) (← links)
- Comparative analysis of housekeeping and tissue-selective genes in human based on network topologies and biological properties. (Q39982150) (← links)