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Tissue-based map of the human proteome

Science · 2015 · Vol. 347(6220) · pp. 1260419–1260419
Mathias UhlénLinn FagerbergBjörn M. HallströmCecilia LindskogPer OksvoldAdil MardinoğluÅsa SivertssonCaroline KampfEvelina SjöstedtAnna AsplundIng‐Marie OlssonKarolina EdlundEmma LundbergSanjay NavaniCristina Al‐Khalili SzigyartoJacob OdebergDijana DjureinovicJenny Ottosson TakanenSophia HoberTove AlmPer-Henrik EdqvistHolger BerlingHanna TegelJan MulderJohan RockbergPeter NilssonJochen M. SchwenkMarica HamstenKalle von FeilitzenMattias ForsbergLukas PerssonFredric JohanssonMartin ZwahlenGunnar von HeijneJens NielsenFredrik Pontén

Abstract

Resolving the molecular details of proteome variation in the different tissues and organs of the human body will greatly increase our knowledge of human biology and disease. Here, we present a map of the human tissue proteome based on an integrated omics approach that involves quantitative transcriptomics at the tissue and organ level, combined with tissue microarray-based immunohistochemistry, to achieve spatial localization of proteins down to the single-cell level. Our tissue-based analysis detected more than 90% of the putative protein-coding genes. We used this approach to explore the human secretome, the membrane proteome, the druggable proteome, the cancer proteome, and the metabolic functions in 32 different tissues and organs. All the data are integrated in an interactive Web-based database that allows exploration of individual proteins, as well as navigation of global expression patterns, in all major tissues and organs in the human body.

Advanced Proteomics Techniques and ApplicationsBioinformatics and Genomic NetworksGene expression and cancer classificationProteomeHuman proteome projectHuman Protein AtlasBiologyComputational biologyTranscriptomeDruggabilityProteomicsBioinformaticsGene

MeSH terms

Cell LineFemaleGenesGenetic CodeHumansMaleMembrane ProteinsNeoplasmsTissue DistributionTranscription, GeneticAlternative SplicingProtein IsoformsInternetProteomeMitochondrial Proteins

Funding

  • Knut och Alice Wallenbergs Stiftelse
  • Science for Life Laboratory
  • U.S. Food and Drug Administration
  • Uppsala Multidisciplinary Center for Advanced Computational Science
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