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-Structure paper
Title | Anchor extension: a structure-guided approach to design cyclic peptides targeting enzyme active sites. |
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Journal, issue, pages | Nat Commun, Vol. 12, Page 3384-3384, Year 2021 |
Publish date | Apr 8, 2020 (structure data deposition date) |
Authors | Hosseinzadeh, P. / Watson, P.R. / Craven, T.W. / Li, X. / Rettie, S. / Pardo-Avila, F. / Bera, A.K. / Mulligan, V.K. / Lu, P. / Ford, A.S. ...Hosseinzadeh, P. / Watson, P.R. / Craven, T.W. / Li, X. / Rettie, S. / Pardo-Avila, F. / Bera, A.K. / Mulligan, V.K. / Lu, P. / Ford, A.S. / Weitzner, B.D. / Stewart, L.J. / Moyer, A.P. / Di Piazza, M. / Whalen, J.G. / Greisen, P.J. / Christianson, D.W. / Baker, D. |
External links | Nat Commun / PubMed:34099674 |
Methods | X-ray diffraction |
Resolution | 1.54 - 2.9 Å |
Structure data | PDB-6whn: PDB-6who: PDB-6whq: PDB-6whz: PDB-6wi3: PDB-6wsj: |
Chemicals | ChemComp-ZN: ChemComp-NA: ChemComp-NHE: ChemComp-PG4: ChemComp-PGE: ChemComp-PEG: ChemComp-HOH: ChemComp-K: ChemComp-EDO: |
Source |
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Keywords | HYDROLASE/HYDROLASE INHIBITOR / Anchor extension / de novo design macrocycles / HYDROLASE / HYDROLASE-HYDROLASE INHIBITOR complex / histone deacetylases / histone deacetylase / inhibitor / metallohydrolase |