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-Structure paper
Title | A Family of Dual-Activity Glycosyltransferase-Phosphorylases Mediates Mannogen Turnover and Virulence in Leishmania Parasites. |
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Journal, issue, pages | Cell Host Microbe, Vol. 26, Page 385-399.e9, Year 2019 |
Publish date | Dec 6, 2018 (structure data deposition date) |
Authors | Sernee, M.F. / Ralton, J.E. / Nero, T.L. / Sobala, L.F. / Kloehn, J. / Vieira-Lara, M.A. / Cobbold, S.A. / Stanton, L. / Pires, D.E.V. / Hanssen, E. ...Sernee, M.F. / Ralton, J.E. / Nero, T.L. / Sobala, L.F. / Kloehn, J. / Vieira-Lara, M.A. / Cobbold, S.A. / Stanton, L. / Pires, D.E.V. / Hanssen, E. / Males, A. / Ward, T. / Bastidas, L.M. / van der Peet, P.L. / Parker, M.W. / Ascher, D.B. / Williams, S.J. / Davies, G.J. / McConville, M.J. |
External links | Cell Host Microbe / PubMed:31513773 |
Methods | X-ray diffraction |
Resolution | 1.55 - 1.7 Å |
Structure data | PDB-6q4w: PDB-6q4x: PDB-6q4y: PDB-6q4z: PDB-6q50: |
Chemicals | ChemComp-HOH: ChemComp-NA: ChemComp-BMA: ChemComp-MAN: ChemComp-PO4: ChemComp-EDO: |
Source |
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Keywords | TRANSFERASE / HYDROLASE / phosphorylase |