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Dive into the research topics where Manfred Kircher is active.

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Featured researches published by Manfred Kircher.


Applied Microbiology and Biotechnology | 1991

Amplification of three threonine biosynthesis genes inCorynebacterium glutamicum and its influence on carbon flux in different strains

Bernhard J. Eikmanns; Markus Metzger; Dieter J. Reinscheid; Manfred Kircher; Hermann Sahm

SummaryThe hom-thrB operon (homoserine dehydrogenase/homoserine kinase) and the thrC gene (threonine synthase) of Corynebacterium glutamicum ATCC 13 032 and the homFBR (homoserine dehydrogenase resistant to feedback inhibition by threonine) alone as well as homFBR-thrB operon of C. glutamicum DM 368-3 were cloned separately and in combination in the Escherichia coli/C. glutamicum shuttle vector pEK0 and introduced into different corynebacterial strains. All recombinant strains showed 8- to 20-fold higher specific activities of homoserine dehydrogenase, homoserine kinase, and/or threonine synthase compared to the respective host. In wild-type C. glutamicum, amplification of the threonine genes did not result in secretion of threonine. In the lysine producer C. glutamicum DG 52-5 and in the lysine-plus-threonine producer C. glutamicum DM 368-3 overexpression of hom-thrB resulted in a notable shift of carbon flux from lysine to threonine whereas cloning of homFBR-thrB as well as of homFBR in C. glutamicum DM 368-3 led to a complete shift towards threonine or towards threonine and its precursor homoserine, respectively. Overexpression of thrC alone or in combination with that of homFBR and thrB had no effect on threonine or lysine formation in all recombinant strains tested.


Biologie in Unserer Zeit | 1998

Aminosäuren – ein Beitrag zur Welternährung

Manfred Kircher; Wolfgang Leuchtenberger


Archive | 1987

Method for the fermentative production of L-amino acids from α-keto acids

Christian Wandrey; Rolf Wichmann; Ulrich Groeger; Manfred Kircher; Wolfgang Leuchtenberger; Eberhard Breuker


Archive | 1992

Method for the fermentative production of L-isoleucine from D,L-α-hydroxybutyrate

Elisabeth Scheer; Hermann Sahm; Lothar Eggeling; Manfred Kircher; Wolfgang Leuchtenberger


Archive | 1987

Process for the preparation by fermentation of L-isoleucine from D,L-alpha-hydroxybutyrate

Elisabeth Scheer; Hermann Sahm; Lothar Eggeling; Manfred Kircher; Wolfgang Leuchtenberger


Biologie in Unserer Zeit | 1998

Aminosuren - ein Beitrag zur Welternhrung

Manfred Kircher; Wolfgang Leuchtenberger


Archive | 1987

Verfahren zur fermentativen herstellung von l-isoleucin aus d,l-alpha-hydroxybutyrat. A process for the fermentative preparation of L-isoleucine from D, L-alpha-hydroxybutyrate.

Elisabeth Scheer; Hermann Sahm; Lothar Eggeling; Manfred Kircher; Wolfgang Leuchtenberger


Archive | 1987

A process for preparing L-isoleucine from D, L-alpha-hydroxybutyrate by fermentation.

Elisabeth Scheer; Hermann Sahm; Lothar Eggeling; Manfred Kircher; Wolfgang Leuchtenberger


Archive | 1987

Method for the production of l-aminoacids from alpha-cetocarboxylic acids by fermentation

Christian Wandrey; Rolf Wichmann; Ulrich Groeger; Manfred Kircher; Wolfgang Leuchtenberger; Eberhard Breuker


Archive | 1986

A process for the fermentative production of L-isoleucine from d l-, -hydroxyburyrat (alpha)

Elisabeth Scheer; Hermann Sahm; Lothar Eggeling; Manfred Kircher; Wolfgang Leuchtenberger

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Hermann Sahm

Forschungszentrum Jülich

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Lothar Eggeling

Forschungszentrum Jülich

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Christian Wandrey

Clausthal University of Technology

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Ulrich Groeger

Forschungszentrum Jülich

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Rolf Wichmann

Technical University of Dortmund

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