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-Structure paper
Title | De novo design of tunable, pH-driven conformational changes. |
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Journal, issue, pages | Science, Vol. 364, Page 658-664, Year 2019 |
Publish date | Oct 17, 2018 (structure data deposition date) |
Authors | Boyken, S.E. / Benhaim, M.A. / Busch, F. / Jia, M. / Bick, M.J. / Choi, H. / Klima, J.C. / Chen, Z. / Walkey, C. / Mileant, A. ...Boyken, S.E. / Benhaim, M.A. / Busch, F. / Jia, M. / Bick, M.J. / Choi, H. / Klima, J.C. / Chen, Z. / Walkey, C. / Mileant, A. / Sahasrabuddhe, A. / Wei, K.Y. / Hodge, E.A. / Byron, S. / Quijano-Rubio, A. / Sankaran, B. / King, N.P. / Lippincott-Schwartz, J. / Wysocki, V.H. / Lee, K.K. / Baker, D. |
External links | Science / PubMed:31097662 |
Methods | X-ray diffraction |
Resolution | 1.28 - 1.55 Å |
Structure data | PDB-6msq: PDB-6msr: |
Chemicals | ChemComp-HOH: |
Source |
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Keywords | DE NOVO PROTEIN / Computational Design / helical bundle |