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Paper Details

Assigning protein function from domain-function associations using DomFun.
BMC Bioinformatics
5
2022
CATH, FunFam, FunFam domains, FunFams, amino acid, homologous, motifs, protein domains, superfamilies
Author NameAffiliation
Ian SillitoeUniversity College London
Ian SillitoeUniversity College London
Christine OrengoUniversity College London
Christine OrengoUniversity College London
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Datasets

KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink
KEGGKyoto encyclopedia of genes and genomes: databases on genes, proteins, and metabolic pathwaysLink