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-Structure paper
Title | Multidisciplinary studies with mutated HIV-1 capsid proteins reveal structural mechanisms of lattice stabilization. |
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Journal, issue, pages | Nat Commun, Vol. 14, Page 5614-5614, Year 2023 |
Publish date | Sep 7, 2017 (structure data deposition date) |
Authors | Gres, A.T. / Kirby, K.A. / McFadden, W.M. / Du, H. / Liu, D. / Xu, C. / Bryer, A.J. / Perilla, J.R. / Shi, J. / Aiken, C. ...Gres, A.T. / Kirby, K.A. / McFadden, W.M. / Du, H. / Liu, D. / Xu, C. / Bryer, A.J. / Perilla, J.R. / Shi, J. / Aiken, C. / Fu, X. / Zhang, P. / Francis, A.C. / Melikyan, G.B. / Sarafianos, S.G. |
External links | Nat Commun / PubMed:37699872 |
Methods | X-ray diffraction |
Resolution | 2 - 2.6 Å |
Structure data | PDB-6ay9: PDB-6aya: PDB-6b2g: PDB-6b2h: PDB-6b2i: PDB-6b2j: PDB-6b2k: |
Chemicals | ChemComp-IOD: ChemComp-CL: ChemComp-HOH: |
Source |
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Keywords | VIRAL PROTEIN / HIV-1 capsid protein / hexamer / CPSF6 complex / Nup153 complex / P38A mutant / P38A/T216I mutant / E45A mutant / E45A/R132T mutant |