Catalytic Properties and Classification of Cellobiose Dehydrogenases from Ascomycetes

Author:

Harreither Wolfgang1,Sygmund Christoph1,Augustin Manfred1,Narciso Melanie1,Rabinovich Mikhail L.2,Gorton Lo3,Haltrich Dietmar1,Ludwig Roland1

Affiliation:

1. Department of Food Sciences and Technology, Food Biotechnology Laboratory, BOKU—University of Natural Resources and Life Sciences, Muthgasse 18, A-1190 Vienna, Austria

2. A. N. Bach Institute of Biochemistry, Russian Academy of Sciences, 33 Leninsky Prospect, 119071 Moscow, Russia

3. Department of Analytical Chemistry/Biochemistry, Lund University, P.O. Box 124, SE-22100 Lund, Sweden

Abstract

ABSTRACT Putative cellobiose dehydrogenase (CDH) genes are frequently discovered in various fungi by genome sequencing projects. The expression of CDH, an extracellular flavocytochrome, is well studied in white rot basidiomycetes and is attributed to extracellular lignocellulose degradation. CDH has also been reported for plant-pathogenic or saprotrophic ascomycetes, but the molecular and catalytic properties of these enzymes are currently less investigated. This study links various ascomycetous cdh genes with the molecular and catalytic characteristics of the mature proteins and suggests a differentiation of ascomycete class II CDHs into two subclasses, namely, class IIA and class IIB, in addition to the recently introduced class III of hypothetical ascomycete CDHs. This new classification is based on sequence and biochemical data obtained from sequenced fungal genomes and a screening of 40 ascomycetes. Thirteen strains showed CDH activity when they were grown on cellulose-based media, and Chaetomium atrobrunneum , Corynascus thermophilus , Dichomera saubinetii , Hypoxylon haematostroma , Neurospora crass a , and Stachybotrys bisbyi were selected for detailed studies. In these strains, one or two cdh -encoding genes were found that stem either from class IIA and contain a C-terminal carbohydrate-binding module or from class IIB without such a module. In several strains, both genes were found. Regarding substrate specificity, class IIB CDHs show a less pronounced substrate specificity for cellobiose than class IIA enzymes. A pH-dependent pattern of the intramolecular electron transfer was also observed, and the CDHs were classified into three groups featuring acidic, intermediate, or alkaline pH optima. The pH optimum, however, does not correlate with the CDH subclasses and is most likely a species-dependent adaptation to different habitats.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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