Apparent Conversion of Sorbose to Fructose by Acetobacter Species

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Phosphorolytic Cleavage of Fructose-&phosphate by Fructose-6-phosphate Phosphoketolase from Acetobacter xylinum*

The synthesis of cellulose by washed suspensions of Acetobatter xylinum proceeds in the presence of iodoacetate at concentrations which completely inhibit the oxidation of glyceraldehyde-a-phosphate (1). Since glucose was the only carbon compound added, the possibility was considered that the energy required for the biosynthetic process may be derived from reactions linked to the pentose phosph...

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Phosphorolytic cleavage of fructose-6-phosphate by fructose-6-phosphate phosphoketolase from Acetobacter xylinum.

The synthesis of cellulose by washed suspensions of Acetobatter xylinum proceeds in the presence of iodoacetate at concentrations which completely inhibit the oxidation of glyceraldehyde-a-phosphate (1). Since glucose was the only carbon compound added, the possibility was considered that the energy required for the biosynthetic process may be derived from reactions linked to the pentose phosph...

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Metabolism of fructose-1,6-diphosphate and acetate in Acetobacter suboxydans.

Cell free extracts of Acetobacter suboxydans catalyze the formation of triosephosphate from either glucose or glycerol. The same extracts consume triosephosphate by the aldolase and pentose cycle reactions (Hauge et al., 1955; Kitos, 1956). Although fructose-1 , 6-diphosphate (FDP)3 is oxidized by molecular oxygen in the presence of either whole cells or cell extract, other evidence does not in...

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Formation of cellulose by certain species of Acetobacter.

Hilditch, T. P. (1947). The Chemical Con8titution of Natural Fats, 2nd ed. pp. 306-310. London: Chapman and Hall, Ltd. Howard, G. A. & Martin, A. J.P. (1950). Bsochem. J. 44, 532. Hunter, G. D. & Popjak, G. (1951). Biochem. J. 48, v. Klem, A. (1943). Nor8ke Vid. Akad. no. 27. MoClymont, G. L. (1949). Biochem. J. 45, i. Martin, A. J. P. (1950). Unpublished observations. Peters, J. P. & Van Slyke...

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Conversion of Glycerol to Dihydroxyacetone by Immobilized Whole Cells of Acetobacter xylinum.

Enzymatic production of dihydroxyacetone (DHA) was studied by immobilization of the whole cells of acetic acid bacteria capable of oxidizing glycerol to DHA. Acetobacter xylinum A-9 cells immobilized in a polyacrylamide gel were selected as the most favorable enzyme preparation. The enzymatic properties of immobilized cells converting glycerol to DHA were investigated and compared with those of...

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ژورنال

عنوان ژورنال: Agricultural and Biological Chemistry

سال: 1961

ISSN: 1881-1280,0002-1369

DOI: 10.1271/bbb1961.25.870