scholarly article | Q13442814 |
P819 | ADS bibcode | 2014PLoSO...987075A |
P356 | DOI | 10.1371/JOURNAL.PONE.0087075 |
P932 | PMC publication ID | 3904972 |
P698 | PubMed publication ID | 24489837 |
P5875 | ResearchGate publication ID | 260063358 |
P50 | author | Anna Panza | Q56056776 |
Nicola Ancona | Q57031021 | ||
Teresamaria Creanza | Q64768206 | ||
Angelo Andriulli | Q38544038 | ||
P2093 | author name string | Ada Piepoli | |
Vania C Liuzzi | |||
Roberto Anglani | |||
P2860 | cites work | Hallmarks of Cancer: The Next Generation | Q22252312 |
HCCR-1-interacting molecule "deleted in polyposis 1" plays a tumor-suppressor role in colon carcinogenesis | Q24292886 | ||
Gene set enrichment analysis: a knowledge-based approach for interpreting genome-wide expression profiles | Q24536351 | ||
Online Mendelian Inheritance in Man (OMIM), a knowledgebase of human genes and genetic disorders | Q24558589 | ||
Significance analysis of microarrays applied to the ionizing radiation response | Q24606608 | ||
Molecular origins of cancer: Molecular basis of colorectal cancer | Q24617331 | ||
A census of human cancer genes | Q24647081 | ||
Somatic mutations affect key pathways in lung adenocarcinoma | Q24648102 | ||
Entrez Gene: gene-centered information at NCBI | Q24670011 | ||
Network biology: understanding the cell's functional organization | Q27861027 | ||
The genomic landscapes of human breast and colorectal cancers | Q27861078 | ||
The ABC of APC | Q28205388 | ||
A role for Id in the regulation of TGF-beta-induced epithelial-mesenchymal transdifferentiation | Q28265320 | ||
Interferons, immunity and cancer immunoediting | Q28270336 | ||
APC mutations occur early during colorectal tumorigenesis | Q28274764 | ||
Evaluation of DNA from the Papanicolaou test to detect ovarian and endometrial cancers | Q28282973 | ||
KEGG for integration and interpretation of large-scale molecular data sets | Q29547277 | ||
Lung cancer | Q29615473 | ||
Epidermal growth factor receptor mutations in lung cancer | Q29615474 | ||
Computational systems biology | Q29616655 | ||
Insights into pancreatic cancer etiology from pathway analysis of genome-wide association study data | Q30573020 | ||
Meta-analysis of microarray data on pancreatic cancer defines a set of commonly dysregulated genes | Q30989925 | ||
Analysing differential gene expression in cancer. | Q54738045 | ||
Nuclear factor-kappaB p65 (RelA) transcription factor is constitutively activated in human gastric carcinoma tissue | Q77372895 | ||
Differential coexpression analysis using microarray data and its application to human cancer | Q33225476 | ||
A differential wiring analysis of expression data correctly identifies the gene containing the causal mutation. | Q33438450 | ||
Comparative study of gene set enrichment methods. | Q33499521 | ||
Cancer genetics: tumor suppressor meets oncogene. | Q33533777 | ||
Death-receptor O-glycosylation controls tumor-cell sensitivity to the proapoptotic ligand Apo2L/TRAIL. | Q34006269 | ||
Genomic analysis of regulatory network dynamics reveals large topological changes | Q34348943 | ||
Correlation of Wnt-2 expression and beta-catenin intracellular accumulation in Chinese gastric cancers: relevance with tumour dissemination | Q34419175 | ||
Rewiring of genetic networks in response to DNA damage. | Q34425692 | ||
G-protein-coupled receptors and cancer. | Q34606002 | ||
Dynamic modularity in protein interaction networks predicts breast cancer outcome | Q34934057 | ||
GATA Transcription Factors and Cancer | Q34972814 | ||
Two major Smad pathways in TGF-beta superfamily signalling. | Q35026971 | ||
TRAF6 is an amplified oncogene bridging the RAS and NF-κB pathways in human lung cancer | Q35370365 | ||
Differential network entropy reveals cancer system hallmarks. | Q36393280 | ||
Bruton's tyrosine kinase revealed as a negative regulator of Wnt-beta-catenin signaling | Q36684373 | ||
Src as a potential therapeutic target in non-small-cell lung cancer. | Q37128267 | ||
Aryl hydrocarbon receptor suppresses intestinal carcinogenesis in ApcMin/+ mice with natural ligands | Q37304164 | ||
From 'differential expression' to 'differential networking' - identification of dysfunctional regulatory networks in diseases | Q37767030 | ||
Differential network biology | Q37976573 | ||
Targeting the MHC Class II antigen presentation pathway in cancer immunotherapy | Q38060734 | ||
Co-expression networks: graph properties and topological comparisons | Q38348933 | ||
Development of immunohistochemistry assays to assess GALNT14 and FUT3/6 in clinical trials of dulanermin and drozitumab | Q38417726 | ||
RANKL increases migration of human lung cancer cells through intercellular adhesion molecule-1 up-regulation | Q39590554 | ||
Rewiring makes the difference | Q42652232 | ||
GATHER: a systems approach to interpreting genomic signatures | Q48430257 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | e87075 | |
P577 | publication date | 2014-01-28 | |
P1433 | published in | PLOS One | Q564954 |
P1476 | title | Loss of connectivity in cancer co-expression networks | |
P478 | volume | 9 |
Q30940449 | A system level analysis of gastric cancer across tumor stages with RNA-seq data |
Q61800008 | Characterization of DNA Methylation Associated Gene Regulatory Networks During Stomach Cancer Progression |
Q30961708 | DECODE: an integrated differential co-expression and differential expression analysis of gene expression data |
Q28067474 | Differential Regulatory Analysis Based on Coexpression Network in Cancer Research |
Q54943418 | Dramatic dysbalancing of the Wnt pathway in breast cancers. |
Q90171142 | Edgetic perturbation signatures represent known and novel cancer biomarkers |
Q49396002 | Evidence for widespread dysregulation of circadian clock progression in human cancer |
Q90642111 | Feature selection based on differentially correlated gene pairs reveals the mechanism of IFN-β therapy for multiple sclerosis |
Q28550898 | Gene Network Rewiring to Study Melanoma Stage Progression and Elements Essential for Driving Melanoma |
Q38771720 | Gene co-expression analysis for functional classification and gene-disease predictions |
Q64062008 | Genetic and environmental perturbations lead to regulatory decoherence |
Q58695403 | Genetic diversity of strawberry germplasm using metabolomic biomarkers |
Q36672248 | Heterogeneous DNA methylation contributes to tumorigenesis through inducing the loss of coexpression connectivity in colorectal cancer |
Q64098317 | Identification of key regulatory genes connected to NF-κB family of proteins in visceral adipose tissues using gene expression and weighted protein interaction network |
Q90268194 | Identification of lncRNA-associated differential subnetworks in oesophageal squamous cell carcinoma by differential co-expression analysis |
Q37687760 | Increased gene expression noise in human cancers is correlated with low p53 and immune activities as well as late stage cancer |
Q31123719 | Large-Scale Public Transcriptomic Data Mining Reveals a Tight Connection between the Transport of Nitrogen and Other Transport Processes in Arabidopsis |
Q92476644 | Lower connectivity of tumor coexpression networks is not specific to cancer |
Q37050779 | Meta-Analysis of Differential Connectivity in Gene Co-Expression Networks in Multiple Sclerosis. |
Q47124253 | Metrics to estimate differential co-expression networks |
Q36188413 | MinePath: Mining for Phenotype Differential Sub-paths in Molecular Pathways. |
Q37508331 | Pan- and core- network analysis of co-expression genes in a model plant. |
Q52318559 | Pathways of topological rank analysis (PoTRA): a novel method to detect pathways involved in hepatocellular carcinoma |
Q36676632 | The mRNA related ceRNA-ceRNA landscape and significance across 20 major cancer types. |
Search more.