scholarly article | Q13442814 |
P50 | author | Eivind Almaas | Q54063520 |
Stefan Wuchty | Q87803920 | ||
P2860 | cites work | Initial sequencing and analysis of the human genome | Q21045365 |
The Sequence of the Human Genome | Q22065842 | ||
The Pfam protein families database | Q24599089 | ||
The architecture of complex weighted networks | Q24631525 | ||
Emergence of Scaling in Random Networks | Q27037290 | ||
Network biology: understanding the cell's functional organization | Q27861027 | ||
Collective dynamics of 'small-world' networks | Q27861064 | ||
Domain combinations in archaeal, eubacterial and eukaryotic proteomes | Q28203959 | ||
Domains in proteins: definitions, location, and structural principles | Q28236404 | ||
Lethality and centrality in protein networks | Q29547267 | ||
Detecting protein function and protein-protein interactions from genome sequences | Q29547473 | ||
The large-scale organization of metabolic networks | Q29547498 | ||
Evidence for dynamically organized modularity in the yeast protein-protein interaction network | Q29614449 | ||
Hierarchical organization of modularity in metabolic networks | Q29618451 | ||
Apoptotic molecular machinery: vastly increased complexity in vertebrates revealed by genome comparisons | Q30658935 | ||
Mapping protein family interactions: intramolecular and intermolecular protein family interaction repertoires in the PDB and yeast | Q33939885 | ||
Modular organization of cellular networks | Q34329388 | ||
InterDom: a database of putative interacting protein domains for validating predicted protein interactions and complexes | Q35158913 | ||
Evolution and topology in the yeast protein interaction network | Q35574132 | ||
Small worlds in RNA structures | Q39731377 | ||
The Proteome Analysis database: a tool for the in silico analysis of whole proteomes | Q39790616 | ||
The multiplicity of domains in proteins | Q40422007 | ||
Integrative approach for computationally inferring protein domain interactions | Q47896325 | ||
Subnetwork hierarchies of biochemical pathways | Q48604133 | ||
The small world of metabolism | Q52071916 | ||
Scale-free behavior in protein domain networks | Q52590402 | ||
The small world inside large metabolic networks. | Q55016270 | ||
Interaction and domain networks of yeast | Q78620971 | ||
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 24 | |
P577 | publication date | 2005-01-01 | |
P1433 | published in | BMC Evolutionary Biology | Q13418959 |
P1476 | title | Evolutionary cores of domain co-occurrence networks | |
P478 | volume | 5 |
Q31004647 | A Protein Domain Co-Occurrence Network Approach for Predicting Protein Function and Inferring Species Phylogeny |
Q36763376 | A Systems Biology-Based Investigation into the Pharmacological Mechanisms of Wu Tou Tang Acting on Rheumatoid Arthritis by Integrating Network Analysis |
Q34331097 | A disease-drug-phenotype matrix inferred by walking on a functional domain network |
Q36524119 | A multi-objective optimization approach accurately resolves protein domain architectures |
Q28541247 | A systems biology-based approach to uncovering the molecular mechanisms underlying the effects of dragon's blood tablet in colitis, involving the integration of chemical analysis, ADME prediction, and network pharmacology |
Q37598989 | A systems biology-based investigation into the therapeutic effects of Gansui Banxia Tang on reversing the imbalanced network of hepatocellular carcinoma |
Q36539847 | Complex networks and simple models in biology. |
Q33287350 | Comprehensive analysis of co-occurring domain sets in yeast proteins |
Q24594789 | Constraints and plasticity in genome and molecular-phenome evolution |
Q58777160 | Deciphering Key Pharmacological Pathways of Qingdai Acting on Chronic Myeloid Leukemia Using a Network Pharmacology-Based Strategy |
Q29029166 | Deciphering Protein–Protein Interactions. Part II. Computational Methods to Predict Protein and Domain Interaction Partners |
Q64053996 | Deciphering the mechanism of Indirubin and its derivatives in the inhibition of Imatinib resistance using a "drug target prediction-gene microarray analysis-protein network construction" strategy |
Q36123961 | Deciphering the pharmacological mechanism of the Chinese formula huanglian-jie-du decoction in the treatment of ischemic stroke using a systems biology-based strategy |
Q37294569 | Domain mobility in proteins: functional and evolutionary implications |
Q41962436 | Evolution and quantitative comparison of genome-wide protein domain distributions |
Q35875108 | Evolution of domain promiscuity in eukaryotic genomes--a perspective from the inferred ancestral domain architectures |
Q28754448 | Evolutionary history and functional implications of protein domains and their combinations in eukaryotes |
Q33995285 | Evolutionary versatility of eukaryotic protein domains revealed by their bigram networks |
Q24672981 | Global topological features of cancer proteins in the human interactome |
Q43460248 | Human protein–protein interaction prediction by a novel sequence-based co-evolution method: co-evolutionary divergence |
Q38483244 | Identification of AKT kinases as unfavorable prognostic factors for hepatocellular carcinoma by a combination of expression profile, interaction network analysis and clinical validation |
Q31147209 | Identification of GRB2 and GAB1 coexpression as an unfavorable prognostic factor for hepatocellular carcinoma by a combination of expression profile and network analysis |
Q47361429 | Identification of key active constituents of Buchang Naoxintong capsules with therapeutic effects against ischemic stroke by using an integrative pharmacology-based approach |
Q36089866 | Improvement in Protein Domain Identification Is Reached by Breaking Consensus, with the Agreement of Many Profiles and Domain Co-occurrence |
Q41930584 | Inference of a Geminivirus-Host Protein-Protein Interaction Network through Affinity Purification and Mass Spectrometry Analysis |
Q41865846 | K-core decomposition of a protein domain co-occurrence network reveals lower cancer mutation rates for interior cores |
Q38490778 | LiverAtlas: a unique integrated knowledge database for systems‐level research of liver and hepatic disease |
Q47304411 | MOCASSIN-prot: A Multi-Objective Clustering Approach for Protein Similarity Networks |
Q89809785 | Network and pathway-based analyses of genes associated with osteoporosis |
Q36259282 | Networks of genomic co-occurrence capture characteristics of human influenza A (H3N2) evolution |
Q33302712 | On the detection of functionally coherent groups of protein domains with an extension to protein annotation |
Q33361618 | Origin of co-expression patterns in E. coli and S. cerevisiae emerging from reverse engineering algorithms |
Q89579234 | PlaPPISite: a comprehensive resource for plant protein-protein interaction sites |
Q33403916 | Protein domain organisation: adding order |
Q36403382 | Protein linguistics - a grammar for modular protein assembly? |
Q34193294 | Relative stability of core groups in pollination networks in a biodiversity hotspot over four years. |
Q33291250 | Reuse of structural domain-domain interactions in protein networks |
Q34252899 | Revisiting the variation of clustering coefficient of biological networks suggests new modular structure |
Q42208640 | Searching for superspreaders of information in real-world social media. |
Q21134856 | SyStemCell: A Database Populated with Multiple Levels of Experimental Data from Stem Cell Differentiation Research |
Q37105102 | Systematic investigation of transcription factors critical in the protection against cerebral ischemia by Danhong injection |
Q45056698 | Tethering preferences of domain families co-occurring in multi-domain proteins |
Q51905685 | The evolution of genetic networks by non-adaptive processes |
Q35227259 | Uncovering pharmacological mechanisms of Wu-tou decoction acting on rheumatoid arthritis through systems approaches: drug-target prediction, network analysis and experimental validation |
Q21563986 | k -Core Organization of Complex Networks |
Q57259018 | k-core (bootstrap) percolation on complex networks: Critical phenomena and nonlocal effects |
Search more.