EC Number   |
Substrates   |
Products   |
Reversibility   |
|---|
 2.7.1.3 | ATP + D-fructose |
- |
ADP + D-fructose 1-phosphate |
- |
r |
 2.7.1.3 | ATP + D-fructose |
specific for beta-furanose anomer |
ADP + D-fructose 1-phosphate |
- |
? |
 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 |
- |
? |
 2.7.1.3 | ATP + D-fructose |
D-fructose metabolism |
ADP + D-fructose 1-phosphate |
- |
? |
 2.7.1.3 | ATP + D-fructose |
role in formation of glycoaldehyde |
ADP + D-fructose 1-phosphate |
- |
? |
 2.7.1.3 | ATP + D-fructose |
- |
ADP + D-fructose 1-phosphate |
- |
ir |
 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 |
- |
? |
 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 |
- |
? |
 2.7.1.3 | ATP + D-psicose |
- |
? |
- |
r |
 2.7.1.3 | ATP + D-ribono-gamma-lactone |
- |
? |
- |
r |