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Furthermore, it is a participant in and a product of the pentose phosphate pathway.
Sedoheptulose 7-phosphate is an intermediate in the pentose phosphate pathway.
It is a metabolic enzyme involved in the pentose phosphate pathway.
Xu5p is produced in the pentose phosphate pathway when levels of Glucose-6-phosphate are high (the cell has ample glucose).
Once formed, galactonate may enter the pentose phosphate pathway.
Most bacteria use glycolysis and the pentose phosphate pathway.
The remaining fraction of glucose is shunted primarily down the pentose phosphate pathway.
Ribulose 5-phosphate is one of the end-products of the pentose phosphate pathway.
Due to its role in the Calvin cycle and the pentose phosphate pathway, the overall structure is conserved.
Genes for nearly all of the pentose phosphate pathway enzymes have been identified from the genome sequence.
Ribulose sugars are composed in the pentose phosphate pathway.
This enzyme participates in pentose phosphate pathway and glutathione metabolism.
Excess glucose-6-phosphate enters the pentose phosphate pathway.
Galactonate is metabolized by the pentose phosphate pathway, and is not considered toxic.
When growing under autotrophic conditions R. eutropha fixes carbon through the pentose phosphate pathway.
Transaldolase links the pentose phosphate pathway to glycolysis.
They also contain approximately 10% of the total activity of two enzymes in the pentose phosphate pathway, which is important for energy metabolism.
The last step of the oxidative reactions in the pentose phosphate pathway is the production of ribulose 5-phosphate.
Before this enzyme's reaction, glucose-6-phosphate can potentially travel down the pentose phosphate pathway, or be converted to glucose-1-phosphate for glycogenesis.
Moreover, there is a third alternative sugar-catabolic pathway used by some bacteria, the pentose phosphate pathway.
The reactions of the pentose phosphate pathway (PPP) take place in the cytoplasm.
It plays a vital role in biochemical metabolism in both the pentose phosphate pathway and the Calvin cycle.
Fructosephosphates play integral roles in many metabolic pathways, particularly glycolysis, gluconeogenesis and the pentose phosphate pathway.
As a result, any glucose 6-phosphate produced in those cells is committed to cellular metabolic pathways, primarily pentose phosphate pathway or glycolysis.
Pentose phosphate pathway In addition to these metabolic pathways, glucose 6-phosphate may also be converted to glycogen or starch for storage.