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-Structure paper
Title | Engineering of a glycosidase Family 7 cellobiohydrolase to more alkaline pH optimum: the pH behaviour of Trichoderma reesei Cel7A and its E223S/ A224H/L225V/T226A/D262G mutant. |
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Journal, issue, pages | Biochem. J., Vol. 356, Page 19-30, Year 2001 |
Publish date | Feb 16, 2000 (structure data deposition date) |
Authors | Becker, D. / Braet, C. / Brumer III, H. / Claeyssens, M. / Divne, C. / Fagerstrom, B.R. / Harris, M. / Jones, T.A. / Kleywegt, G.J. / Koivula, A. ...Becker, D. / Braet, C. / Brumer III, H. / Claeyssens, M. / Divne, C. / Fagerstrom, B.R. / Harris, M. / Jones, T.A. / Kleywegt, G.J. / Koivula, A. / Mahdi, S. / Piens, K. / Sinnott, M.L. / Stahlberg, J. / Teeri, T.T. / Underwood, M. / Wohlfahrt, G. |
External links | Biochem. J. / PubMed:11336632 |
Methods | X-ray diffraction |
Resolution | 1.6 Å |
Structure data | PDB-1egn: |
Chemicals | ChemComp-NAG: ChemComp-CO: ChemComp-HOH: |
Source |
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Keywords | HYDROLASE / GLYCOSIDASE / CELLULASE / CELLULOSE DEGRADATION / GLYCOPROTEIN / GLYCOSYLATED PROTEIN / PH-MUTANT |