Journal Article

·2012

IMPROVEDCandida methylicaFORMATE DEHYDROGENASE FERMENTATION THROUGH STATISTICAL OPTIMIZATION OF LOW-COST CULTURE MEDIA

Mustafa Kahraman , Emel Ordu YTU , Koray Yeşiladalı , Nevin Gül Karagüler , Candan Tamerler

Preparative Biochemistry & Biotechnology

Abstract

NAD⁺-dependent formate dehydrogenase (FDH, EC 1.2.1.2) is of use in the regeneration of NAD(P)H coenzymes, and therefore has strong potential for practical application in chemical and medical industries. A low-cost production of recombinant Escherichia coli (E. coli) containing FDH from Candida methylica (cmFDH) was optimized in molasses-based medium by using response surface methodology (RSM) based on central composite design (CCD). The beet molasses as a sole carbon source, (NH₄)₂HPO₄ as a nitrogen and phosphorus source, KH₂PO₄ as a buffer agent, and Mg₂SO₄ · 7H₂O as a magnesium and sulfur source were used as variables in the medium. The optimum medium composition was found to be 34.694 g L⁻¹ of reducing sugar (equivalent to molasses solution), 8.536 g L⁻¹ of (NH₄)₂HPO₄, 3.073 g L⁻¹ of KH₂PO₄, and 1.707 g L⁻¹ of Mg₂SO₄ · 7H₂O. Molasses-based culture medium increased the yield of cmFDH about three times compared to LB medium. The currently developed media has the potential to be used in industrial bioprocesses with low-cost production.

Keywords

Formate dehydrogenase Central composite design Response surface methodology Chemistry Fermentation Food science Cofactor Formate Escherichia coli NAD+ kinase Biochemistry Yeast extract Chromatography Nuclear chemistry Enzyme Catalysis

Subject Areas

Enzyme Catalysis and Immobilization ·Molecular Biology ·Life Sciences
Phosphorus and nutrient management ·Industrial and Manufacturing Engineering ·Physical Sciences
Catalysis for Biomass Conversion ·Biomedical Engineering ·Physical Sciences

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