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High-level functional expression of a fungal xylose isomerase: The key to efficient ethanolic fermentation of xylose by Saccharomyces cerevisiae?
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M. Kuyper, H.R. Harhangi, A.K. Stave, A.A. Winkler, M.S.M. Jetten, W.T.A.M. De Laat, J.J.J. Den Ridder, H.J.M. Op den Camp, J.P. van Dijken, and J.T. Pronk High-level functional expression of a fungal xylose isomerase: the key to efficient ethanolic fermentation of xylose by Saccharomyces cerevisiae? FEMS Yeast Res 4 2003 69 78
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Kuyper, M.1
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De Laat, W.T.A.M.6
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52
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Evolutionary engineering of mixed-sugar utilization by a xylose-fermenting Saccharomyces cerevisiae strain
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M. Kuyper, M.J. Toirkens, J.A. Diderich, A.A. Winkler, J.P. van Dijken, and J.T. Pronk Evolutionary engineering of mixed-sugar utilization by a xylose-fermenting Saccharomyces cerevisiae strain FEMS Yeast Res 5 2005 925 934
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Kuyper, M.1
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Metabolic engineering of a xylose-isomerase-expressing Saccharomyces cerevisiae strain for rapid anaerobic xylose fermentation
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M. Kuyper, M.M.P. Hartog, M.J. Toirkens, M.J.H. Almering, A.A. Winkler, J.P. van Dijken, and J.T. Pronk Metabolic engineering of a xylose-isomerase- expressing Saccharomyces cerevisiae strain for rapid anaerobic xylose fermentation FEMS Yeast Res 5 2005 399 409 It appears that Delft University of Technology has now generated a recombinant yeast strain that has sufficient rates on mixed sugars to be worthwhile for industrial development. Their earlier approach to eliminate much of the redox imbalance issues by finding a yeast-compatible xylose isomerase [51] has worked well.
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Xylose isomerase activity influences xylose fermentation with recombinant Saccharomyces cerevisiae strains expressing mutated xylA from Thermus thermophilus
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A. Lonn, K.L. Traff-Bjerre, R.R. Cordero Otero, W.H. van Zyl, and B. Hahn-Hagerdal Xylose isomerase activity influences xylose fermentation with recombinant Saccharomyces cerevisiae strains expressing mutated xylA from Thermus thermophilus Enzyme Microb Technol 32 2003 567 573
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Lonn, A.1
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Hahn-Hagerdal, B.5
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