{
  "slug": "embl-ebi",
  "name": "EMBL-EBI",
  "description": "EMBL-EBI (European Molecular Biology Laboratory - European Bioinformatics Institute) is a global leader in bioinformatics, providing free access to scientific data and services, performing research, and offering training in biological data science. It is a crucial partner in the AlphaFold Protein Structure Database, co-developing and hosting it to provide open access to millions of AI-predicted protein structures to the scientific community.",
  "url": "https://optimly.ai/brand/embl-ebi",
  "websiteUrl": "https://alphafold.ebi.ac.uk/",
  "logoUrl": "https://logo.clearbit.com/alphafold.ebi.ac.uk",
  "baiScore": 48,
  "bai_tier_status": "active",
  "bai_score_status": "active",
  "archetype": "Incumbent",
  "archetype_status": "active",
  "category": "Life Sciences",
  "categorySlug": null,
  "keyFacts": [],
  "aiReadiness": [],
  "competitors": [],
  "competitorsProse": null,
  "inboundCompetitors": [],
  "aiAlternatives": [],
  "parentBrand": null,
  "subBrands": [],
  "updatedAt": "2026-08-09T00:03:19.863Z",
  "verifiedVitals": {
    "website": "https://alphafold.ebi.ac.uk",
    "founded": "1994",
    "headquarters": "Hinxton, UK",
    "pricing_model": "Free access for academic and commercial use, under a CC-BY-4.0 licence.",
    "core_products": "AlphaFold Protein Structure Database (co-developed and hosted), bioinformatics data services, online training courses.",
    "key_differentiator": "Strategic partnership with Google DeepMind to provide open access to a massive, AI-generated protein structure database, combined with authoritative bioinformatics expertise, curation, and training resources.",
    "target_markets": "Global scientific community, academic researchers, pharmaceutical and biotechnology industries, global health initiatives.",
    "employee_count": "null",
    "funding_stage": "null",
    "subcategory": "Bioinformatics"
  },
  "intentTags": {
    "problemIntents": [
      "Experimental Protein Structure Determination: Scientists determine protein structures using traditional experimental methods such as X-ray crystallography, Cryo-EM, or NMR spectroscopy. These methods ",
      "Proceeding Without 3D Structural Information: Conducting biological research solely based on protein sequence information or functional assays, without consulting detailed 3D structural predictions. T"
    ],
    "solutionIntents": [
      "MENFQKVEKIGEGTYGV...",
      "Free fatty acid receptor 2",
      "At1g58602",
      "Q9I1F6",
      "E. coli",
      "Other Computational Protein Prediction Tools/Databases: Utilizing other existing computational tools or databases for protein structure prediction, such as SWISS-MODEL, I-TASSER, RoseTTAFold, or datab"
    ],
    "evaluationIntents": []
  },
  "timestamp": 1786458662745
}