Promoter in the presence of organic acid and utilization thereof
The invention provides a promoter that can be used in the presence of an organic acid. The promoter includes DNA with promoter activity of high osmolarity response 7 gene (HOR7 gene), glycelaldehyde 3 phosphate dehydrogenase 2 gene (TDH2 gene), heat shock protein 30 gene (HSP30), hexose transport pr...
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Format | Patent |
Language | English |
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13.04.2010
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Abstract | The invention provides a promoter that can be used in the presence of an organic acid. The promoter includes DNA with promoter activity of high osmolarity response 7 gene (HOR7 gene), glycelaldehyde 3 phosphate dehydrogenase 2 gene (TDH2 gene), heat shock protein 30 gene (HSP30), hexose transport protein 7 gene (HXT7 gene), thioredoxin peroxidase 1 gene (AHP1 gene), or membrane protein 1 associated gene gene) of yeasts. |
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AbstractList | The invention provides a promoter that can be used in the presence of an organic acid. The promoter includes DNA with promoter activity of high osmolarity response 7 gene (HOR7 gene), glycelaldehyde 3 phosphate dehydrogenase 2 gene (TDH2 gene), heat shock protein 30 gene (HSP30), hexose transport protein 7 gene (HXT7 gene), thioredoxin peroxidase 1 gene (AHP1 gene), or membrane protein 1 associated gene gene) of yeasts. |
Author | Takahashi, Haruo Tokuhiro, Kenro Nagamori, Eiji Saitoh, Satoshi Ishida, Nobuhiro Ohnishi, Tohru |
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CorporateAuthor | Toyota Jidosha Kabuhsiki Kaisha Kabuhsiki Kaisha Toyota Chuo Jenjyusho |
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References | (02/064766) 20020800 (02/00880) 20020100 Wu, Ke et al., "Expression and subcellular localization of a membrane protein related to Hsp30p in Saccharomyces cerevisiae", Biochimica Acta, vol. 1463, No. 2, pp. 477-482, 2000. Brambilla, L. et al., "NADH reoxidation does not control glycolytic flux during exposure of respiring Saccharomyces cerevisiae cultures to glucose excess", FEMS Microbiology Letters, vol. 171, pp. 133-140, 1999. (WO 99/14335) 19990300 Dequin, Sylvie et al., "Mixed Lactic Acid-Alcoholic Fermentation by Saccharomyes cerevisiae Expressing the Lactobacillus casei L (+)-LDH", Bio/Technology, vol. 12, pp. 173-176, Feb. 1994. Hauf, Joerg et al., "Simultaneous genomic overexpression of seven glycolytic enzymes in the yeast Saccharomyces cerevisiae", Enzyme and Microbial Technology, vol. 26, No. 9-10, pp. 688-698, 2000. Riou, C. et al., "Stationary-Phase Gene Expression in Saccharomyces cerevisiae During Wine Fermentation", Yeast, vol. 13, No. 10, pp. 903-915, 1997. Porro, Danilo et al., "Development of Metabolically Engineered Saccharomyces cerevisiae Cells for the Production of Lactic Acid", Biotechnol. Prog., vol. 11, pp. 294-298, 1995. (2001/38549) 20010500 (84/04538) 19841100 Adachi, Eri, et al., "Modification of Metabolic Pathways of Saccharomyces cerevisiae by the Expression of Lactate Dehydrogenase and Deletion of Pyruvate Decarboxylase Genes for the Lactic Acid Fermentation at Low pH Value", Journal of Fermentation and Bioengineering, vol. 36, No. 3, pp. 284-289, 1998. (2003-164295) 20030600 Hause et al. (2003/0228671) 20031200 |
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Snippet | The invention provides a promoter that can be used in the presence of an organic acid. The promoter includes DNA with promoter activity of high osmolarity... |
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