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October 26, 2016Nucleic Acids Research9,598 citationsOpen Access

KEGG: new perspectives on genomes, pathways, diseases and drugs

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MKMinoru KanehisaMFMiho FurumichiMTMao Tanabe

Key Points

  • This project aims to assign functional meanings to genes and genomes at both molecular and higher levels.
  • Developed KEGG database for genes, genomes, and molecular interactions.
  • Expanded KO database to include functional orthologs and individual proteins.
  • Systematic analysis of drug labels for the integration of the DISEASE and DRUG databases.
  • Improved quality and content of KO database with newly defined functional orthologs.
  • Enhanced KEGG pathway maps and KEGG modules to represent molecular interactions.
  • Integration of diseases and drugs with KEGG molecular networks for better utility.

Abstract

KEGG (http://www.kegg.jp/ or http://www.genome.jp/kegg/) is an encyclopedia of genes and genomes. Assigning functional meanings to genes and genomes both at the molecular and higher levels is the primary objective of the KEGG database project. Molecular-level functions are stored in the KO (KEGG Orthology) database, where each KO is defined as a functional ortholog of genes and proteins. Higher-level functions are represented by networks of molecular interactions, reactions and relations in the forms of KEGG pathway maps, BRITE hierarchies and KEGG modules. In the past the KO database was developed for the purpose of defining nodes of molecular networks, but now the content has been expanded and the quality improved irrespective of whether or not the KOs appear in the three molecular network databases. The newly introduced addendum category of the GENES database is a collection of individual proteins whose functions are experimentally characterized and from which an increasing number of KOs are defined. Furthermore, the DISEASE and DRUG databases have been improved by systematic analysis of drug labels for better integration of diseases and drugs with the KEGG molecular networks. KEGG is moving towards becoming a comprehensive knowledge base for both functional interpretation and practical application of genomic information.

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Cite This Study

Kanehisa et al. (2016) studied this question.

synapsesocial.com/papers/69876a04ba3aac94262532d6https://doi.org/10.1093/nar/gkw1092
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1KEGG: Kyoto Encyclopedia of Genes and Genomes1999 · 32,516 citations
  2. 2KEGG for linking genomes to life and the environment2007 · 7,109 citations
  3. 3KEGG as a reference resource for gene and protein annotation2015 · 8,007 citations
  4. 4From genomics to chemical genomics: new developments in KEGG2005 · 3,186 citations
  5. 5metaKEGG: A comprehensive algorithm package to visualize multi-omics pathway enrichment2026