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Dive into the research topics where Andrei Miasnikov is active.

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Featured researches published by Andrei Miasnikov.


Applied and Environmental Microbiology | 2007

Metabolic Engineering of Saccharomyces cerevisiae for Conversion of d-Glucose to Xylitol and Other Five-Carbon Sugars and Sugar Alcohols

Mervi Toivari; Laura Ruohonen; Andrei Miasnikov; Peter Richard; Merja Penttilä

ABSTRACT Recombinant Saccharomyces cerevisiae strains that produce the sugar alcohols xylitol and ribitol and the pentose sugar d-ribose from d-glucose in a single fermentation step are described. A transketolase-deficient S. cerevisiae strain accumulated d-xylulose 5-phosphate intracellularly and released ribitol and pentose sugars (d-ribose, d-ribulose, and d-xylulose) into the growth medium. Expression of the xylitol dehydrogenase-encoding gene XYL2 of Pichia stipitis in the transketolase-deficient strain resulted in an 8.5-fold enhancement of the total amount of the excreted sugar alcohols ribitol and xylitol. The additional introduction of the 2-deoxy-glucose 6-phosphate phosphatase-encoding gene DOG1 into the transketolase-deficient strain expressing the XYL2 gene resulted in a further 1.6-fold increase in ribitol production. Finally, deletion of the endogenous xylulokinase-encoding gene XKS1 was necessary to increase the amount of xylitol to 50% of the 5-carbon sugar alcohols excreted.


Applied and Environmental Microbiology | 2004

Cloning and characterization of gluconolactone oxidase of Penicillium cyaneo-fulvum ATCC 10431 and evaluation of its use for production of D-erythorbic acid in recombinant Pichia pastoris.

Tuomas Salusjärvi; Nisse Kalkkinen; Andrei Miasnikov

ABSTRACT A d-erythorbic acid-forming soluble flavoprotein, gluconolactone oxidase (GLO), was purified from Penicillium cyaneo-fulvum strain ATCC 10431 and partially sequenced. Peptide sequences were used to isolate a cDNA clone encoding the enzyme. The cloned gene (accession no. AY576053 ) exhibits high levels of similarity with the genes encoding other known eukaryotic lactone oxidases and also with the genes encoding some putative prokaryotic lactone oxidases. Analysis of the coding sequence of the GLO gene indicated the presence of a typical secretion signal sequence at the N terminus of GLO. No other targeting or anchoring signals were found, suggesting that GLO is the first known lactone oxidase that is secreted rather than targeted to the membranes of the endoplasmic reticulum or mitochondria. Experimental evidence, including the N-terminal sequence of mature GLO and data on glycosylation and localization of the enzyme in native and recombinant hosts, supports this analysis. The GLO gene was expressed in Pichia pastoris, and recombinant GLO was produced by using the strong methanol-induced AOX1 promoter. In order to evaluate the suitability of purified GLO for production of d-erythorbic acid, we immobilized it on N-hydroxysuccinimide-activated Sepharose and found that the immobilized GLO retained full activity during immobilization but was rather unstable under reaction conditions. Our results show that both soluble and immobilized forms of GLO can, in principle, be used for production of d-erythorbic acid from d-glucono-δ-lactone or (in combination with glucose oxidase and catalase) from glucose. We also demonstrated the feasibility of glucose-d-erythorbic acid fermentation with recombinant strains coexpressing GLO and glucose oxidase genes, and we analyzed problems associated with construction of efficient d-erythorbic acid-producing hosts.


Applied Microbiology and Biotechnology | 2005

Characterisation of a secondary alcohol dehydrogenase from Xanthomonas campestris DSM 3586

Tuomas Salusjärvi; Niels Hvorslev; Andrei Miasnikov

The chromosomal locus NP_636946 of Xanthomonas campestris DSM 3586 (ATCC 33913) which was earlier presumed to encode a quinoprotein glucose dehydrogenase has been cloned, expressed in Escherichia coli and the recombinant enzyme has been characterised. It was found to have no glucose dehydrogenase activity but to be active on many different polyols and diols, aliphatic alcohols, certain aldonic acids and amino-sugars. The product of d-gluconic acid oxidation was 5-keto-d-gluconic acid. The enzyme differs from polyol/gluconate dehydrogenases found in Gluconobacter by its single-chain architecture, different substrate specificity and much higher (20- to 30-fold) expression level in E.coli.


Applied Microbiology and Biotechnology | 2004

Cloning of a gluconate/polyol dehydrogenase gene from Gluconobacter suboxydans IFO 12528, characterisation of the enzyme and its use for the production of 5-ketogluconate in a recombinant Escherichia coli strain

T. Salusjärvi; M. Povelainen; N. Hvorslev; E. V. Eneyskaya; A. A. Kulminskaya; K. A. Shabalin; K. N. Neustroev; Nisse Kalkkinen; Andrei Miasnikov


Journal of Biotechnology | 2007

Production of xylitol by metabolically engineered strains of Bacillus subtilis

Mira Povelainen; Andrei Miasnikov


Biotechnology Letters | 2000

A new efficient expression system for Bacillus and its application to production of recombinant phytase

Janne Kerovuo; Niklas von Weymarn; Mira Povelainen; Sanna Auer; Andrei Miasnikov


Archive | 2009

Expression of Catalase in Trichoderma

Timothy C. Dodge; Katherine Marie Hoffmann; Andrei Miasnikov; Michael Ward


Archive | 2001

Manufacture of five-carbon sugars and sugar alcohols

Andrei Miasnikov; Heikki Ojamo; Mira Povelainen; Hakan Gros; Mervi Toivari; Peter Richard; Laura Ruohonen; Kari Koivuranta; John Londesborough; Aristos Maple Grove Aristidou; Merja Penttila; Claire Plazanet-Menut; Josef Deutscher


Archive | 2005

Microbial phytase as supplement to food or fodder

Andrei Miasnikov; Vijay Kumar; Oliver Kensch; Klaus Pellengahr; Birgitta Leuthner; Ulrich Kettling; Andre Koltermann


Biotechnology Journal | 2006

Production of D-arabitol by a metabolic engineered strain of Bacillus subtilis.

Mira Povelainen; Andrei Miasnikov

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