Studies on microbial glycerol dehydrogenase. Part IV. Glycerol dehydrogenase and glycerol dissimilation in Cellulomonas sp. NT3060.
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概要
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Glycerol kinase and glycerol 3-phosphate (G3P) dehydrogenase activities were induced when Cellulomonas sp. NT3060, a high level producer of glycerol dehydrogenase, was grown on either glycerol or G3P. Eleven glycerol-negative mutants were isolated from the wild type strain. These mutant strains were classified into three groups which are defective in glycerol kinase, G3P dehydrogenase and both the enzymes, respectively. All the mutant strains were unable to grow on glycerol, but still showed high glycerol dehydrogenase activity. Gluconate enhanced the formation of glycerol dehydrogenase. A glycerol dehydrogenase-defective mutant strain derived from a mutant strain defective in both glycerol kinase and G3P dehydrogenase showed apparently the sajne growth as the wild type and its parental strains when grown on gluconate. The results indicate that glycerol dehydrogenase does not participate in the dissimilation of glycerol via the phosphorylative pathway in which glycerol is phosphorylated by glycerol kinase to G3P followed by oxidation to dihydroxyacetone phosphate by G3P dehydrogenase in Cellulomonas sp. NT3060. The physiological role of glycerol dehydrogenase in the strain was discussed.
- 公益社団法人 日本農芸化学会の論文
著者
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NISHISE Hiroshi
Department of Agricultural Chemistry, Kyoto University
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OGAWA Atsuko
Department of Agricultural Chemistry, Kyoto University
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- Studies on microbial glycerol dehydrogenase. Part IV. Glycerol dehydrogenase and glycerol dissimilation in Cellulomonas sp. NT3060.