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Appl Microbiol Biotechnol ; 46(1): 46-54, 1996 Aug.
Article in English | MEDLINE | ID: mdl-8987534

ABSTRACT

The methylotrophic yeast Hansenula polymorpha has been developed as an efficient production system for heterologous proteins. The system offers the possibility to cointegrate heterologous genes in anticipated fixed copy numbers into the chromosome. As a consequence co-production of different proteins in stoichiometric ratios can be envisaged. This provides options to design this yeast as an industrial biocatalyst in procedures where several enzymes are required for the efficient conversion of a given inexpensive compound into a valuable product. To this end recombinant strains have been engineered with multiple copies of expression cassettes containing the glycolate oxidase (GO) gene from spinach and the catalase T (CTT1) gene from S. cerevisiae. The newly created strains produce high levels of the peroxisomal glycolate oxidase and the cytosolic catalase T. The strains efficiently convert glycolate into glyoxylic acid, oxidizing the added substrate and decomposing the peroxide formed during this reaction into water and oxygen.


Subject(s)
Alcohol Oxidoreductases/genetics , Catalase/genetics , Gene Expression , Pichia/genetics , Recombinant Proteins/biosynthesis , Alcohol Oxidoreductases/metabolism , Catalase/metabolism , Catalysis , Cytosol/enzymology , Fermentation , Glycolates/metabolism , Glyoxylates/metabolism , Industrial Microbiology , Microbodies/enzymology , Pichia/enzymology , Saccharomyces cerevisiae/enzymology , Spinacia oleracea/enzymology
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