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-Structure paper
Title | A Flexible and Original Architecture of Two Unrelated Zinc Fingers Underlies the Role of the Multitask P1 in RYMV Spread. |
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Journal, issue, pages | J. Mol. Biol., Vol. 434, Page 167715-167715, Year 2022 |
Publish date | Jan 15, 2020 (structure data deposition date) |
Authors | Poignavent, V. / Hoh, F. / Terral, G. / Yang, Y. / Gillet, F.X. / Kim, J.H. / Allemand, F. / Lacombe, E. / Brugidou, C. / Cianferani, S. ...Poignavent, V. / Hoh, F. / Terral, G. / Yang, Y. / Gillet, F.X. / Kim, J.H. / Allemand, F. / Lacombe, E. / Brugidou, C. / Cianferani, S. / Demene, H. / Vignols, F. |
External links | J. Mol. Biol. / PubMed:35798161 |
Methods | X-ray diffraction / NMR (solution) |
Resolution | 1.98 - 2.1 Å |
Structure data | PDB-6ty0: PDB-6ty2: PDB-6xv2: |
Chemicals | ChemComp-ZN: ChemComp-HOH: |
Source |
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Keywords | RNA BINDING PROTEIN / ZINC FINGERS / RNA SILENCING SUPPRESSOR / VIRAL PROTEIN / putative RNA binding protein; silencing suppressor |