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-Structure paper
Title | De novo design of high-affinity binders of bioactive helical peptides. |
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Journal, issue, pages | Nature, Vol. 626, Page 435-442, Year 2024 |
Publish date | Mar 15, 2023 (structure data deposition date) |
Authors | Vazquez Torres, S. / Leung, P.J.Y. / Venkatesh, P. / Lutz, I.D. / Hink, F. / Huynh, H.H. / Becker, J. / Yeh, A.H. / Juergens, D. / Bennett, N.R. ...Vazquez Torres, S. / Leung, P.J.Y. / Venkatesh, P. / Lutz, I.D. / Hink, F. / Huynh, H.H. / Becker, J. / Yeh, A.H. / Juergens, D. / Bennett, N.R. / Hoofnagle, A.N. / Huang, E. / MacCoss, M.J. / Exposit, M. / Lee, G.R. / Bera, A.K. / Kang, A. / De La Cruz, J. / Levine, P.M. / Li, X. / Lamb, M. / Gerben, S.R. / Murray, A. / Heine, P. / Korkmaz, E.N. / Nivala, J. / Stewart, L. / Watson, J.L. / Rogers, J.M. / Baker, D. |
External links | Nature / PubMed:38109936 |
Methods | X-ray diffraction |
Resolution | 1.81 - 3 Å |
Structure data | PDB-8gjg: PDB-8gji: PDB-8t5e: PDB-8t5f: |
Chemicals | ChemComp-HOH: |
Source |
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Keywords | DE NOVO PROTEIN / Alpha-helical peptides / protein design / diffusion / deep learning |