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| Title | Lytic xylan oxidases from wood-decay fungi unlock biomass degradation. |
|---|---|
| Journal, issue, pages | Nat. Chem. Biol., Vol. 14, Page 306-310, Year 2018 |
| Publish date | Apr 11, 2017 (structure data deposition date) |
Authors | Couturier, M. / Ladeveze, S. / Sulzenbacher, G. / Ciano, L. / Fanuel, M. / Moreau, C. / Villares, A. / Cathala, B. / Chaspoul, F. / Frandsen, K.E. ...Couturier, M. / Ladeveze, S. / Sulzenbacher, G. / Ciano, L. / Fanuel, M. / Moreau, C. / Villares, A. / Cathala, B. / Chaspoul, F. / Frandsen, K.E. / Labourel, A. / Herpoel-Gimbert, I. / Grisel, S. / Haon, M. / Lenfant, N. / Rogniaux, H. / Ropartz, D. / Davies, G.J. / Rosso, M.N. / Walton, P.H. / Henrissat, B. / Berrin, J.G. |
External links | Nat. Chem. Biol. / PubMed:29377002 |
| Methods | X-ray diffraction |
| Resolution | 3.01 Å |
| Structure data | ![]() PDB-5no7: |
| Chemicals | ![]() ChemComp-SO4: |
| Source |
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Keywords | OXIDOREDUCTASE / Xylan / LPMO / cellulose / Oxydative enzyme / wood |
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pycnoporus cinnabarinus (fungus)
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