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-Structure paper
Title | A cation-pi interaction in a transmembrane helix of vacuolar ATPase retains the proton-transporting arginine in a hydrophobic environment. |
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Journal, issue, pages | J. Biol. Chem., Vol. 293, Page 18977-18988, Year 2018 |
Publish date | Aug 24, 2018 (structure data deposition date) |
Authors | Hohlweg, W. / Wagner, G.E. / Hofbauer, H.F. / Sarkleti, F. / Setz, M. / Gubensak, N. / Lichtenegger, S. / Falsone, S.F. / Wolinski, H. / Kosol, S. ...Hohlweg, W. / Wagner, G.E. / Hofbauer, H.F. / Sarkleti, F. / Setz, M. / Gubensak, N. / Lichtenegger, S. / Falsone, S.F. / Wolinski, H. / Kosol, S. / Oostenbrink, C. / Kohlwein, S.D. / Zangger, K. |
External links | J. Biol. Chem. / PubMed:30209131 |
Methods | NMR (solution) |
Structure data | PDB-6hh0: |
Source |
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Keywords | MEMBRANE PROTEIN / ATPasse / transmembrane helix / DPC micelle / NMR spectroscopy |