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Dive into the research topics where Michael Katzberg is active.

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Featured researches published by Michael Katzberg.


International Journal of Molecular Sciences | 2010

Engineering Cofactor Preference of Ketone Reducing Biocatalysts: A Mutagenesis Study on a γ-Diketone Reductase from the Yeast Saccharomyces cerevisiae Serving as an Example

Michael Katzberg; Nàdia Skorupa-Parachin; Marie-Francoise Gorwa-Grauslund; Martin Bertau

The synthesis of pharmaceuticals and catalysts more and more relies on enantiopure chiral building blocks. These can be produced in an environmentally benign and efficient way via bioreduction of prochiral ketones catalyzed by dehydrogenases. A productive source of these biocatalysts is the yeast Saccharomyces cerevisiae, whose genome also encodes a reductase catalyzing the sequential reduction of the γ-diketone 2,5-hexanedione furnishing the diol (2S,5S)-hexanediol and the γ-hydroxyketone (5S)-hydroxy-2-hexanone in high enantio- as well as diastereoselectivity (ee and de >99.5%). This enzyme prefers NADPH as the hydrogen donating cofactor. As NADH is more stable and cheaper than NADPH it would be more effective if NADH could be used in cell-free bioreduction systems. To achieve this, the cofactor binding site of the dehydrogenase was altered by site-directed mutagenesis. The results show that the rational approach based on a homology model of the enzyme allowed us to generate a mutant enzyme having a relaxed cofactor preference and thus is able to use both NADPH and NADH. Results obtained from other mutants are discussed and point towards the limits of rationally designed mutants.


Organic and Biomolecular Chemistry | 2010

Highly efficient and stereoselective biosynthesis of (2S,5S)-hexanediol with a dehydrogenase from Saccharomyces cerevisiae

Marion Müller; Michael Katzberg; Martin Bertau; Werner Hummel


Archive | 2013

Industrielle Anorganische Chemie: BUECHEL:ANORG.CHEMIE A4 O-BK

Martin Bertau; Armin Müller; Peter Fröhlich; Michael Katzberg


Chemical Engineering & Technology | 2010

Application of Material and Energy Flow Analysis in the Early Stages of Biotechnical Process Development – A Case Study

Tobias Brinkmann; Hendrik Rubbeling; Peter Fröhlich; Michael Katzberg; Martin Bertau


Journal of Molecular Catalysis B-enzymatic | 2014

Production and properties of threonine aldolase immobilisates

Sandra Kurjatschij; Michael Katzberg; Martin Bertau


Nachrichten Aus Der Chemie | 2011

Technische Chemie 2010

Peter Fröhlich; Andrea Kruse; Stefan Ernst; Michael Katzberg


Industrielle Anorganische Chemie, Vierte Auflage | 2013

Metalle und ihre Verbindungen

Martin Bertau; Armin Müller; Peter Fröhlich; Michael Katzberg


Industrielle Anorganische Chemie, Vierte Auflage | 2013

Halbleiter‐ und Technologiematerialien

Martin Bertau; Armin Müller; Peter Fröhlich; Michael Katzberg


Chemie Ingenieur Technik | 2012

Untersuchungen zur Optimierung der Threonin‐Aldolase‐katalysierten Synthese von chiralen Aminoalkoholen

B. Chaudhari; E. Hain; Sandra Kurjatschij; Michael Katzberg; Martin Bertau


Archive | 2011

Die drohende Rohstoffknappheit und ehrgeizige Klimaziele führen zu neuen Entwicklungen in der Katalyse sowie zu Techniken zur Sequestrierung oder Verwertung von CO2 - entweder direkt oder über nachwachsende Rohstoffe wie Pflanzenbiomasse. Der Rohstoffwandel beginnt, und es entsteht eine neue Rohstoffbasis mit potenziell geschlossenem Kohlenstoffkreislauf.

Peter Fröhlich; Andrea Kruse; Stefan Ernst; Michael Katzberg

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Martin Bertau

Freiberg University of Mining and Technology

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Peter Fröhlich

Freiberg University of Mining and Technology

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Armin Müller

Freiberg University of Mining and Technology

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Andrea Kruse

University of Hohenheim

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Sandra Kurjatschij

Freiberg University of Mining and Technology

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B. Chaudhari

Freiberg University of Mining and Technology

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E. Hain

Freiberg University of Mining and Technology

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Werner Hummel

University of Düsseldorf

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