2.7.1.3 ATP + 2,5-anhydro-D-glucitol - ? - ? 357454 2.7.1.3 ATP + 2,5-anhydro-D-glucitol - ? - r 357454 2.7.1.3 ATP + 2,5-anhydro-D-lyxitol - ? - r 357456 2.7.1.3 ATP + 2,5-anhydro-D-lyxitol - ? - ? 357456 2.7.1.3 ATP + 2,5-anhydro-D-mannitol - ? - ? 357453 2.7.1.3 ATP + 2,5-anhydro-D-mannitol - ? - r 357453 2.7.1.3 ATP + 2,5-anhydro-D-mannose - ? - ? 357455 2.7.1.3 ATP + 2,5-anhydro-D-mannose - ? - r 357455 2.7.1.3 ATP + 5-keto-D-fructose - ? - ? 452257 2.7.1.3 ATP + D-fructose - ADP + D-fructose 1-phosphate - ? 353973 2.7.1.3 ATP + D-fructose - ADP + D-fructose 1-phosphate - r 353973 2.7.1.3 ATP + D-fructose specific for beta-furanose anomer ADP + D-fructose 1-phosphate - ? 353973 2.7.1.3 ATP + D-fructose conversion of fructose to glucose in liver homogenates involves the intermediary formation of D-fructose 1-phosphate ADP + D-fructose 1-phosphate - ? 353973 2.7.1.3 ATP + D-fructose D-fructose metabolism ADP + D-fructose 1-phosphate - ? 353973 2.7.1.3 ATP + D-fructose role in formation of glycoaldehyde ADP + D-fructose 1-phosphate - ? 353973 2.7.1.3 ATP + D-fructose - ADP + D-fructose 1-phosphate - ir 353973 2.7.1.3 ATP + D-fructose except for ATP, other nucleotides such as UTP, CTP, GTP, or ITP can not act as phosphoryl donors ADP + D-fructose 1-phosphate - ? 353973 2.7.1.3 ATP + D-fructose fructose enters glycolytic metabolism after phosphorylation by ketohexokinase and is converted to fructose-1-phosphate. Fructose-driven glycolytic respiration in Heterocephalus glaber tissues avoids feedback inhibition of glycolysis via phosphofructokinase, allowing continued glycolytic flux independent of cellular energy status and supporting viability ADP + D-fructose 1-phosphate - ? 353973 2.7.1.3 ATP + D-psicose - ? - r 357446 2.7.1.3 ATP + D-ribono-gamma-lactone - ? - r 357457 2.7.1.3 ATP + D-ribose - ? - r 357452 2.7.1.3 ATP + D-ribose - ? - ? 357452 2.7.1.3 ATP + D-ribulose - ? - ? 357460 2.7.1.3 ATP + D-sedoheptulose - ? - r 357449 2.7.1.3 ATP + D-sorbose - ? - ? 357443 2.7.1.3 ATP + D-tagatose - ? - ? 357445 2.7.1.3 ATP + D-tagatose - ? - r 357445 2.7.1.3 ATP + D-xylose - ADP + D-xylose 1-phosphate - ? 452258 2.7.1.3 ATP + D-xylulose - ? - r 357447 2.7.1.3 ATP + D-xylulose - ? - ? 357447 2.7.1.3 ATP + L-galactoheptulose - ? - r 357450 2.7.1.3 ATP + L-ribulose - ? - r 357448 2.7.1.3 ATP + L-sorbose - ? - r 357444 2.7.1.3 ATP + L-sorbose - ? - ? 357444 2.7.1.3 ATP + L-sorbose specific for alpha anomer ? - ? 357444 2.7.1.3 ATP + mannoheptulose - ? - r 357451 2.7.1.3 GTP + D-fructose - ? - ? 357459 2.7.1.3 additional information not: UTP ? - ? 89 2.7.1.3 additional information not: ITP ? - ? 89 2.7.1.3 additional information the minimum molecule for substrate activity seems to be (2R)-2-hydroxymethyl-3,4-dihydroxytetrahydrofuran ? - ? 89 2.7.1.3 additional information not: 2,6-anhydro-D-glucitol ? - ? 89 2.7.1.3 additional information specificity of fructokinase is for a tetrahydrofuran ring with beta-D-(or alpha-L-)configuration at position 2, L-configuration at position 3 and either D- or L-configuration at position 4 and 5 ? - ? 89 2.7.1.3 additional information not: 2,6-anhydro-D-mannitol ? - ? 89 2.7.1.3 additional information not: 5-thio-D-fructose ? - ? 89