Elucidation of protein networks involved in the regulation of cation homeostasis using protein interaction datasets.
Submitter: Falko Krause
Biological problem addressed: Model Analysis Type
Investigation: TRK1,2 Transport Systems of Saccharomyces cerev...
Study: Bioinformatic studies
Organisms: Saccharomyces cerevisiae
Models: No Models
SOPs: No SOPs
Data files: No Data files
Snapshots: No snapshots
Protein–protein interaction networks are constructed for each renal cell type to visualize DKD-related molecular connectivity. Nodes represent proteins implicated in diabetic kidney disease (DKD) based on comprehensive literature curation, proteomic profiling, mRNA microarray analyses, and GWAS hits. Edges denote experimentally validated interactions retrieved from the SIGNOR 3.0 database; only interactions for which both source and target belong to the DKD-associated set are retained. Network ...
Creator: Farnoush Kiyanpour
Submitter: Farnoush Kiyanpour
Investigations: No Investigations
Studies: No Studies
Assays: No Assays
Protein–protein interaction networks are constructed for each renal cell type to visualize DKD-related molecular connectivity. Nodes represent proteins implicated in diabetic kidney disease (DKD) based on comprehensive literature curation, proteomic profiling, mRNA microarray analyses, and GWAS hits. Edges denote experimentally validated interactions retrieved from the SIGNOR 3.0 database; only interactions for which both source and target belong to the DKD-associated set are retained. Network ...
Creator: Farnoush Kiyanpour
Submitter: Farnoush Kiyanpour
Investigations: No Investigations
Studies: No Studies
Assays: No Assays
Protein–protein interaction networks are constructed for each renal cell type to visualize DKD-related molecular connectivity. Nodes represent proteins implicated in diabetic kidney disease (DKD) based on comprehensive literature curation, proteomic profiling, mRNA microarray analyses, and GWAS hits. Edges denote experimentally validated interactions retrieved from the SIGNOR 3.0 database; only interactions for which both source and target belong to the DKD-associated set are retained. Network ...
Creator: Farnoush Kiyanpour
Submitter: Farnoush Kiyanpour
Investigations: No Investigations
Studies: No Studies
Assays: No Assays
Protein–protein interaction networks are constructed for each renal cell type to visualize DKD-related molecular connectivity. Nodes represent proteins implicated in diabetic kidney disease (DKD) based on comprehensive literature curation, proteomic profiling, mRNA microarray analyses, and GWAS hits. Edges denote experimentally validated interactions retrieved from the SIGNOR 3.0 database; only interactions for which both source and target belong to the DKD-associated set are retained. Network ...
Creator: Farnoush Kiyanpour
Submitter: Farnoush Kiyanpour
Investigations: No Investigations
Studies: No Studies
Assays: No Assays
Protein–protein interaction networks are constructed for each renal cell type to visualize DKD-related molecular connectivity. Nodes represent proteins implicated in diabetic kidney disease (DKD) based on comprehensive literature curation, proteomic profiling, mRNA microarray analyses, and GWAS hits. Edges denote experimentally validated interactions retrieved from the SIGNOR 3.0 database; only interactions for which both source and target belong to the DKD-associated set are retained. Network ...
Creator: Farnoush Kiyanpour
Submitter: Farnoush Kiyanpour
Investigations: No Investigations
Studies: No Studies
Assays: No Assays
Protein–protein interaction networks are constructed for each renal cell type to visualize DKD-related molecular connectivity. Nodes represent proteins implicated in diabetic kidney disease (DKD) based on comprehensive literature curation, proteomic profiling, mRNA microarray analyses, and GWAS hits. Edges denote experimentally validated interactions retrieved from the SIGNOR 3.0 database; only interactions for which both source and target belong to the DKD-associated set are retained. Network ...
Creator: Farnoush Kiyanpour
Submitter: Farnoush Kiyanpour
Investigations: No Investigations
Studies: No Studies
Assays: No Assays
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