PMID: 9546045Apr 18, 1998Paper

Substrate specificity of cellobiose dehydrogenase from Phanerochaete chrysosporium

Biochimica Et Biophysica Acta
Gunnar HenrikssonG Johansson

Abstract

Substrate structural mapping suggests that the catalytic site of cellobiose dehydrogenase from Phanerochaete chrysosporium forms a narrow cave with two hexose binding subsites. Kinetic data also show that beta-di or oligosaccharides are favored electron donors with respect to both KM and kcat. Surprisingly, thiocellobiose showed an even higher kcat than cellobiose, although the KM value was somewhat higher. The CDH was purified using an updated protocol.

References

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Citations

Sep 22, 2009·Applied Microbiology and Biotechnology·Clemens K Peterbauer, Jindrich Volc
Feb 13, 2001·Enzyme and Microbial Technology·M D. Cameron, S D. Aust
Sep 27, 2000·Biochimica Et Biophysica Acta·G HenrikssonG Johansson
Mar 22, 2000·Journal of Biotechnology·G HenrikssonG Pettersson
Apr 12, 2012·The Journal of Biological Chemistry·Nicolaj Cruys-BaggerPeter Westh
Jan 18, 2003·The Journal of Biological Chemistry·Nanette L S Que-GewirthChristian R H Raetz
Mar 10, 2009·Applied and Environmental Microbiology·Wolfgang HarreitherRoland Ludwig
Mar 29, 2008·FEMS Microbiology Reviews·Petr Baldrian, Vendula Valásková
Jul 28, 2010·Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry·Roland LudwigLo Gorton
Dec 21, 2002·The Journal of Biological Chemistry·B Martin HallbergChristina Divne
Jul 14, 2010·FEMS Microbiology Letters·Chun-Hua HanTzi Bun Ng
Nov 6, 2014·Biomolecular Concepts·Elvira Romero, Giovanni Gadda
Sep 9, 2019·Bioelectrochemistry·Stefan Scheiblbrandner, Roland Ludwig
Jan 8, 2021·Microbial Cell Factories·Lena WohlschlagerRoland Ludwig
Dec 26, 2001·Chemical Reviews·R ten Have, P J Teunissen
Jan 12, 2002·Journal of Molecular Biology·B M HallbergChristina Divne
Oct 24, 2009·Archives of Biochemistry and Biophysics·Christopher G MowatStephen K Chapman

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