• Title of article

    Overexpression of a novel endogenous NADH kinase in Aspergillus nidulans enhances growth

  • Author/Authors

    Panagiotou، نويسنده , , Gianni and Grotkjوr، نويسنده , , Thomas and Hofmann، نويسنده , , Gerald and Bapat، نويسنده , , Prashant M. and Olsson، نويسنده , , Lisbeth، نويسنده ,

  • Issue Information
    دوماهنامه با شماره پیاپی سال 2009
  • Pages
    9
  • From page
    31
  • To page
    39
  • Abstract
    The complete genome sequence of the filamentous fungi Aspergillus nidulans has paved the way for fundamental research on this industrially important species. To the best of our knowledge, this is the first time a gene encoding for ATP-dependent NADH kinase (ATP:NADH 2′-phosphotransferase, EC 2.7.1.86) has been identified. The enzyme has a predicted molecular weight of 49 kDa. We characterised the role of this NADH kinase by genomic integration of the putative gene AN8837.2 under a strong constitutive promoter. ysiological effects of overexpressed NADH kinase in combination with different aeration rates were studied in well-controlled glucose batch fermentations. Metabolite profiling and metabolic network analysis with [1-13C] glucose were used for characterisation of the strains, and the results demonstrated that NADH kinase activity has paramount influence on growth physiology. Biomass yield on glucose and the maximum specific growth rate increased from 0.47 g/g and 0.22 h−1 (wild type) to 0.54 g/g and 0.26 h−1 (NADH kinase overexpressed), respectively. The results suggest that overexpression of NADH kinase improves the growth efficiency of the cell by increasing the access to NADPH. Our findings indicate that A. nidulans is not optimised for growth in nutrient-rich conditions typically found in laboratory and industrial fermentors. This conclusion may impact the design of new strains capable of generating reducing power in the form of NADPH, which is crucial for efficient production of many industrially important metabolites and enzymes.
  • Keywords
    Aspergillus nidulans , NADH kinase , Maximum specific growth rate , Metabolic network analysis , Metabolic engineering
  • Journal title
    Metabolic Engineering
  • Serial Year
    2009
  • Journal title
    Metabolic Engineering
  • Record number

    1428849