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36CR

Structure of the Evo-Phi36 bacteriophage

Summary for 36CR
Entry DOI10.2210/pdb36cr/pdb
Related36CQ
EMDB information77390 77391
DescriptorDNA-binding protein J, Capsid protein F, Major spike protein G (3 entities in total)
Functional Keywordsphage, ai, icosahedral, evo, virus
Biological sourceSinsheimervirus
More
Total number of polymer chains3
Total formula weight70412.43
Authors
Li, D.B.,King, S.H.,Driscoll, C.L.,Wilkinson, M.E.,Hie, B.L. (deposition date: 2026-06-01, release date: 2026-07-08, Last modification date: 2026-08-19)
Primary citationKing, S.H.,Driscoll, C.L.,Li, D.B.,Guo, D.,Merchant, A.T.,Brixi, G.,Wilkinson, M.E.,Hie, B.L.
Generative design of bacteriophages with genome language models.
Science, 393:eaec2657-eaec2657, 2026
Cited by
PubMed Abstract: Many important biological functions arise not from single genes but from complex interactions encoded by entire genomes. We report the first generative design of complete bacteriophage genomes using genome language models. We generated viable bacteriophages with target host tropism, using the phage ΦX174 as our design template. Experimental testing yielded 16 phages with diverse fitness profiles in laboratory conditions. Cryo-electron microscopy confirmed that a generated phage utilizes an evolutionarily distant DNA packaging protein in its capsid. A cocktail of generated phages rapidly overcomes ΦX174-resistant strains, demonstrating a path toward artificial intelligence-generated phage therapies against rapidly evolving bacterial pathogens. This work provides a blueprint for the design of diverse synthetic bacteriophages and useful biological systems at the genome scale.
PubMed: 42561074
DOI: 10.1126/science.aec2657
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (2.9 Å)
Structure validation

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PDB entries from 2026-09-09

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